Saranya Muniyappan, Arockia Xavier Annie Rayan, Geetha Thekkumpurath Varrieth
· Drug Repositioning
· Computer Science and Engineering, CEG Campus, Anna University, Chennai, Tamil Nadu, India. Electronic address: saranyamani18@gmail.com.
· pubmed
The greatest risk factor for many non-communicable diseases is aging. Studies on model organisms have demonstrated that genetic and chemical perturbation alterations can lengthen longevity and overall health. However, finding longevity-enhancing medications and their related targ...
The greatest risk factor for many non-communicable diseases is aging. Studies on model organisms have demonstrated that genetic and chemical perturbation alterations can lengthen longevity and overall health. However, finding longevity-enhancing medications and their related targets is difficult.
Longevity Relevance Analysis
(4)
The paper addresses drug repurposing for aging diseases through drug-target interaction prediction, which is relevant to longevity research as it seeks to identify medications that could potentially enhance longevity and healthspan. However, while the approach is solid, it appears to be an incremental advance rather than a groundbreaking discovery, limiting its overall impact in the field.
Monique Mills, Chihiro Emori, Parveen Kumar ...
· Oocytes
· The Jackson Laboratory, 600 Main Street, Bar Harbor, ME, 04609, USA; The Graduate School of Biomedical Science and Engineering, University of Maine, Orono, ME, 04469, USA.
· pubmed
Immature oocytes enclosed in primordial follicles stored in female ovaries are under constant threat of DNA damage induced by endogenous and exogenous factors. Checkpoint kinase 2 (CHEK2) is a key mediator of the DNA damage response (DDR) in all cells. Genetic studies have shown ...
Immature oocytes enclosed in primordial follicles stored in female ovaries are under constant threat of DNA damage induced by endogenous and exogenous factors. Checkpoint kinase 2 (CHEK2) is a key mediator of the DNA damage response (DDR) in all cells. Genetic studies have shown that CHEK2 and its downstream targets, p53, and TAp63, regulate primordial follicle elimination in response to DNA damage. However, the mechanism leading to their demise is still poorly characterized. Single-cell and bulk RNA sequencing were used to determine the DDR in wild-type and Chek2-deficient ovaries. A low but oocyte-lethal dose of ionizing radiation induces ovarian DDR that is solely dependent on CHEK2. DNA damage activates multiple response pathways related to apoptosis, p53, interferon signaling, inflammation, cell adhesion, and intercellular communication. These pathways are differentially employed by different ovarian cell types, with oocytes disproportionately affected by radiation. Novel genes and pathways are induced by radiation specifically in oocytes, shedding light on their sensitivity to DNA damage, and implicating a coordinated response between oocytes and pregranulosa cells within the follicle. These findings provide a foundation for future studies on the specific mechanisms regulating oocyte survival in the context of aging, therapeutic and environmental genotoxic exposures.
Longevity Relevance Analysis
(4)
The paper investigates the DNA damage response in oocytes, which is relevant to understanding mechanisms of oocyte survival and potential implications for fertility and aging. While it provides solid insights into the pathways involved in oocyte sensitivity to DNA damage, the findings are more incremental rather than groundbreaking, limiting its overall impact on the field of longevity research.
Meng-Hua Tao, Chun-Hui Lin, Mei Lu ...
· Nutrition Surveys
· Department of Public Health Sciences, Henry Ford Health, Detroit, Michigan, USA.
· pubmed
Chronic hepatitis C virus (HCV) infection is associated with early onset of chronic diseases and increased risk of chronic disorders. Chronic viral infections have been linked to accelerated biological aging based on epigenetic clocks. In this study, we aimed to investigate the a...
Chronic hepatitis C virus (HCV) infection is associated with early onset of chronic diseases and increased risk of chronic disorders. Chronic viral infections have been linked to accelerated biological aging based on epigenetic clocks. In this study, we aimed to investigate the association between HCV infection and clinical measures of biological aging among 8 306 adults participating in the 2015-2018 waves of the National Health and Nutrition Examination Survey (NHANES).
Longevity Relevance Analysis
(3)
The paper investigates the association between chronic hepatitis C infection and accelerated biological aging, which is relevant to understanding the mechanisms of aging and age-related diseases. However, while it contributes to the knowledge of how chronic infections may influence biological aging, it does not address root causes of aging or propose interventions for lifespan extension. Thus, its impact is solid but limited.
Xueyan Jia, Haoming Liu, Guoliang Yin ...
· Oxidative Stress
· School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
· pubmed
Arctium lappa L. polysaccharide (ALP) is a prominent bioactive compound renowned for its multifaceted functional properties, including anti-inflammatory, antioxidant, antifibrotic, immunomodulatory, and pro-apoptotic effects. This study evaluated the aging-delaying effect of ALP ...
Arctium lappa L. polysaccharide (ALP) is a prominent bioactive compound renowned for its multifaceted functional properties, including anti-inflammatory, antioxidant, antifibrotic, immunomodulatory, and pro-apoptotic effects. This study evaluated the aging-delaying effect of ALP and its mechanisms using a D-galactose (D-gal)-induced aging model. After an 8-week treatment, ALP significantly ameliorated D-gal-induced inflammation and oxidative stress in the liver, kidneys, and intestines. Notably, ALP administration led to a marked reduction of the pathogenic bacterium Desulfovibrio and a substantial increase in the beneficial bacterium Muribaculum. These microbial shifts were associated with upregulated expression of intestinal tight junction proteins and intestinal mucins, leading to enhanced intestinal barrier integrity. Consequently, the leakage of enterotoxins and inflammatory mediators was effectively reduced. The findings indicate that ALP alleviates tissue inflammation and oxidative stress, while also delaying aging in mice. This effect is achieved through the regulation of intestinal ecological homeostasis and the repair of the intestinal immune barrier.
Longevity Relevance Analysis
(3)
The paper investigates the effects of Arctium lappa L. polysaccharides on oxidative stress and inflammation in aging mice, which aligns with longevity research by addressing mechanisms that may contribute to aging. However, while the findings are interesting and contribute to understanding the role of gut health in aging, the study primarily focuses on a specific compound's effects rather than providing a broader insight into aging mechanisms or significant lifespan extension. Thus, it represents a solid but limited contribution to the field.
Sae Young Jae, Kyung Hyun Lee, Hyun Jeong Kim ...
· Vascular Stiffness
· Department of Sport Science, University of Seoul, Seoul, Republic of Korea.
· pubmed
This study aimed to investigate whether higher cardiorespiratory fitness (CRF) can modify the trend of age-related rise in arterial stiffness in individuals with and without hypertension (HTN) or diabetes.
This study aimed to investigate whether higher cardiorespiratory fitness (CRF) can modify the trend of age-related rise in arterial stiffness in individuals with and without hypertension (HTN) or diabetes.
Longevity Relevance Analysis
(3)
The paper investigates the relationship between cardiorespiratory fitness and arterial stiffness, which is relevant to aging and cardiovascular health. However, it primarily focuses on associations rather than addressing root causes of aging or proposing interventions for lifespan extension. The findings may contribute to understanding age-related changes but do not represent a significant advancement in the field of longevity research.
Marja A Heiskanen, Jaakko Nevalainen, Katja Pahkala ...
· Cognition
· Research Centre of Applied and Preventive Cardiovascular Medicine, University of Turku, Turku, Finland. marja.heiskanen@utu.fi.
· pubmed
Cognitive performance changes during the lifespan, but the information is gathered from studies on separate age cohorts. Computerized neurocognitive testing enables efficient and similar assessments for all ages. We investigated (i) the effect of age at different stages of life a...
Cognitive performance changes during the lifespan, but the information is gathered from studies on separate age cohorts. Computerized neurocognitive testing enables efficient and similar assessments for all ages. We investigated (i) the effect of age at different stages of life and (ii) intergenerational correlations across cognitive domains in the multigenerational Young Finns Study.
Longevity Relevance Analysis
(3)
The paper investigates cognitive performance across the lifespan and intergenerational correlations, which can provide insights into cognitive aging and its implications for longevity. However, while it contributes to understanding cognitive changes, it does not address the root causes of aging or propose solutions for lifespan extension, limiting its overall impact in the field of longevity research.
Kavita Singh, Shraddha I Khairnar, Akshay Sanghavi ...
· Rats, Sprague-Dawley
· Shobhaben Pratapbhai Patel School of Pharmacy & Technology Management, SVKM's NMIMS, Mumbai, India.
· pubmed
Aging and, in particular, the emergence of age-related disorders is associated with tissue dysfunction and macromolecular damage, some of which can be attributable to accumulated oxidative damage. In the current study, we determine the potential of 'plasma-derived fraction (E5)' ...
Aging and, in particular, the emergence of age-related disorders is associated with tissue dysfunction and macromolecular damage, some of which can be attributable to accumulated oxidative damage. In the current study, we determine the potential of 'plasma-derived fraction (E5)' for cellular rejuvenation and extending the lifespan of Sprague Dawley (SD) rats. This is a unique study wherein we have used 24-month-old rats and monitored them until the end of their lifespan with and without E5 treatment. In the present investigation, the SD rats were separated into two groups old control group and the treatment group (n = 8). The treatment group received four injections of E5 every alternate day for 8 days, and eight injections every alternate day for 16 days. Body weight, grip strength, cytokines, and biochemical markers were measured for more than 400 days of the study. Clinical observation, necropsy, and histology were performed. The E5 treatment exhibited great potential by showing significantly improved grip strength, remarkably decreased pro-inflammatory markers of chronic inflammation and oxidative stress, as well as biomarkers for vital organs (BUN, SGPT, SGOT, and triglycerides), and increased anti-oxidant levels. Clinical examinations, necropsies, and histopathology revealed that the animals treated with the E5 had normal cellular structure and architecture. In conclusion, this unique 'plasma-derived exosome' treatment (E5) alone is adequate to improve the health-span and extend the lifespan of the old SD rats significantly.
Longevity Relevance Analysis
(3)
The paper investigates a treatment (E5) that appears to improve health-span and extend lifespan in old Sprague Dawley rats, which is directly related to longevity research. However, the study is limited by a small sample size (n=8) and lacks a robust control mechanism, which diminishes its scientific rigor. While the findings are interesting and contribute to the understanding of potential interventions in aging, they do not represent a significant breakthrough or transformative advancement in the field.
Hyun Jin Cho, Heeeun Jung, Chang Won Won ...
· Independent Living
· Department of Biomedical Science and Technology, Graduate School, Kyung Hee University, Seoul 02447, South Korea.
· pubmed
Frailty is associated with reduced intrinsic capacity (IC). However, studies evaluating longitudinal transitions between IC and frailty are limited. We conducted longitudinal analyses to investigate the association between intrinsic capacity (IC) and frailty transitions among com...
Frailty is associated with reduced intrinsic capacity (IC). However, studies evaluating longitudinal transitions between IC and frailty are limited. We conducted longitudinal analyses to investigate the association between intrinsic capacity (IC) and frailty transitions among community-dwelling older adults in Korea.
Longevity Relevance Analysis
(3)
The paper investigates the relationship between intrinsic capacity and frailty transitions in older adults, which is pertinent to understanding aging and its effects on health. However, while it contributes to the knowledge of frailty and intrinsic capacity, it does not address the root causes of aging or propose interventions for lifespan extension. Thus, its impact is solid but limited in the broader context of longevity research.
Yu Guo, Guojuan Ma, Yukai Wang ...
· Longevity
· School of Computer Science and Technology, Harbin Institute of Technology, Harbin, China.
· pubmed
The causative mechanisms underlying the genetic relationships of neurodegenerative diseases with epigenetic aging and human longevity remain obscure. We aimed to detect causal associations and shared genetic etiology of neurodegenerative diseases with epigenetic aging and human l...
The causative mechanisms underlying the genetic relationships of neurodegenerative diseases with epigenetic aging and human longevity remain obscure. We aimed to detect causal associations and shared genetic etiology of neurodegenerative diseases with epigenetic aging and human longevity. We obtained large-scale genome-wide association study summary statistics data for four measures of epigenetic age (GrimAge, PhenoAge, IEAA, and HannumAge) (N = 34,710), multivariate longevity (healthspan, lifespan, and exceptional longevity) (N = 1,349,462), and for multiple neurodegenerative diseases (N = 6618-482,730), including Lewy body dementia, Alzheimer's disease (AD), Parkinson's disease, amyotrophic lateral sclerosis, and multiple sclerosis. Main analyses were conducted using multiplicative random effects inverse-variance weighted Mendelian randomization (MR), and conditional/conjunctional false discovery rate (cond/conjFDR) approach. Shared genomic loci were functionally characterized to gain biological understanding. Evidence showed that AD patients had 0.309 year less in exceptional longevity (IVW beta = -0.309, 95% CI: -0.38 to -0.24, p = 1.51E-19). We also observed suggestively significant causal evidence between AD and GrimAge age acceleration (IVW beta = -0.10, 95% CI: -0.188 to -0.013, p = 0.02). Following the discovery of polygenic overlap, we identified rs78143120 as shared genomic locus between AD and GrimAge age acceleration, and rs12691088 between AD and exceptional longevity. Among these loci, rs78143120 was novel for AD. In conclusion, we observed that only AD had causal effects on epigenetic aging and human longevity, while other neurodegenerative diseases did not. The genetic overlap between them, with mixed effect directions, suggested complex shared genetic etiology and molecular mechanisms.
Longevity Relevance Analysis
(4)
The paper investigates causal associations between neurodegenerative diseases and epigenetic aging, specifically focusing on Alzheimer's disease and its relationship with human longevity. While it does explore genetic overlaps and potential mechanisms, the findings primarily highlight associations rather than addressing root causes of aging or proposing interventions to extend lifespan. Thus, it contributes solid research to the field but with limited impact on advancing longevity research significantly.
Dedifferentiation and aging of vascular smooth muscle cells (VSMCs) are associated with serious vascular diseases, such as arteriosclerosis and aneurysm. However, how cell dedifferentiation and aging affect cellular mechanical behaviors at the single-cell and intracellular struct...
Dedifferentiation and aging of vascular smooth muscle cells (VSMCs) are associated with serious vascular diseases, such as arteriosclerosis and aneurysm. However, how cell dedifferentiation and aging affect cellular mechanical behaviors at the single-cell and intracellular structure levels remains unclear. An in-depth understanding of these interactions is extremely important for understanding the mechanism underlying VSMC mechanical integrity and homeostatic regulation of vascular walls. Herein, we systematically investigated changes in VSMC morphology, structure, contractility, and motility during dedifferentiation and aging induced by serial passage culture using traction force microscopy with elastic micropillar substrates, laser nanodissection of cytoskeletons, confocal fluorescence microscopy, and atomic force microscopy. We found that VSMC dedifferentiation started in the middle stage of serial passage culture, accompanied by a transient cell spreading in the cell width and decrease in contractile protein expression. Dedifferentiated VSMCs showed a significant decrease in the contraction and stiffness of individual actin stress fibers; however, their overall cell traction forces were maintained. Simultaneously, a significant increase in cell motility and the number of actin fibers was observed in dedifferentiated VSMCs, which may be associated with the enhancement of cell migration and disruption of cell/tissue integrity during the early stage of vascular diseases. As cell senescence progressed in the later stage of serial passage culture, VSMCs displayed reduced cell spreading and migration with decrease in the overall cell traction forces and drastic reduction in mechanical polarity of cell structures and forces. These results suggested that cell senescence causes loss of mechanical contractility and polarity in VSMCs, which may be an important factor in vascular disease progression. The experimental systems established in this study can be powerful tools for understanding the mechanisms underlying cellular dedifferentiation and aging from a biomechanical perspective.
Longevity Relevance Analysis
(4)
The paper investigates the mechanical behaviors of vascular smooth muscle cells (VSMCs) in the context of dedifferentiation and aging, which are relevant to the understanding of cellular aging mechanisms. While it provides solid research on the biomechanical aspects of VSMCs and their implications for vascular diseases, it does not directly address root causes of aging or lifespan extension. The findings contribute to the field but are more incremental than groundbreaking.
Raian E Contreras, Tim Gruber, Ismael González-García ...
· Obesity
· Research Unit NeuroBiology of Diabetes, Helmholtz Munich, Neuherberg, Germany; Institute for Diabetes and Obesity, Helmholtz Munich, Neuherberg, Germany; German Center for Diabetes Research (DZD), Neuherberg, Germany; Neurobiology of Diabetes, TUM School of Medicine & Health, Technische Universität München, München, Germany.
· pubmed
With age, metabolic perturbations accumulate to elevate our obesity burden. While age-onset obesity is mostly driven by a sedentary lifestyle and high calorie intake, genetic and epigenetic factors also play a role. Among these, members of the large histone deacetylase (HDAC) fam...
With age, metabolic perturbations accumulate to elevate our obesity burden. While age-onset obesity is mostly driven by a sedentary lifestyle and high calorie intake, genetic and epigenetic factors also play a role. Among these, members of the large histone deacetylase (HDAC) family are of particular importance as key metabolic determinants for healthy ageing, or metabolic dysfunction. Here, we aimed to interrogate the role of class 2 family member HDAC5 in controlling systemic metabolism and age-related obesity under non-obesogenic conditions. Starting at 6 months of age, we observed adult-onset obesity in chow-fed male global HDAC5-KO mice, that was accompanied by marked reductions in adrenergic-stimulated ATP-consuming futile cycles, including BAT activity and UCP1 levels, WAT-lipolysis, skeletal muscle, WAT and liver futile creatine and calcium cycles, and ultimately energy expenditure. Female mice did not differ between genotypes. The lower peripheral sympathetic nervous system (SNS) activity in mature male KO mice was linked to higher dopaminergic neuronal activity within the dorsomedial arcuate nucleus (dmARC) and elevated hypothalamic dopamine levels. Mechanistically, we reveal that hypothalamic HDAC5 acts as co-repressor of STAT5b over the control of Tyrosine hydroxylase (TH) gene transactivation, which ultimately orchestrates the activity of dmARH dopaminergic neurons and energy metabolism in male mice under non-obesogenic conditions.
Longevity Relevance Analysis
(4)
The paper investigates the role of HDAC5 in metabolic regulation and age-related obesity, which is pertinent to understanding mechanisms that contribute to aging and metabolic dysfunction. However, while it provides solid insights into the metabolic pathways involved, the findings are somewhat incremental and do not present a transformative breakthrough in the field of longevity research. The focus on male mice and specific metabolic pathways limits the broader applicability of the findings.
Skin aging, which results from intrinsic and extrinsic factors, is characterized by a rough, uneven and wrinkled appearance of the skin at the macroscopic level. At the microscopic level, aging shows lowered keratinocyte turnover, flattened dermal-epidermal junction and reduced c...
Skin aging, which results from intrinsic and extrinsic factors, is characterized by a rough, uneven and wrinkled appearance of the skin at the macroscopic level. At the microscopic level, aging shows lowered keratinocyte turnover, flattened dermal-epidermal junction and reduced collagen fiber density; however, use of skin biopsies to evaluate characteristic properties of these microscopic changes is too limiting for panelists and rarely used. The development of non-invasive techniques is an opportunity to be considered for such evaluations. Our objective was to demonstrate the rejuvenating effects of XEP™-716 Miniprotein™ on skin, a miniprotein having TGF-β beta-like properties, in vitro on normal human fibroblasts and at the clinical level.
Longevity Relevance Analysis
(3)
The paper investigates the rejuvenating effects of a TGF-β mimetic on skin aging, which is directly related to the biological processes of aging. However, while it presents a novel approach to skin rejuvenation, the findings appear to be more focused on symptomatic treatment rather than addressing the root causes of aging. Thus, while it contributes to the field of regenerative medicine, its overall impact is limited and more incremental than groundbreaking.
Elleni M Hailu, Xing Gao, Belinda L Needham ...
· Atherosclerosis
· Division of Epidemiology, School of Public Health, University of California, Berkeley, 2121 Berkeley Way #5302, Berkeley, CA, 94720, USA. Electronic address: ehailu@berkeley.edu.
· pubmed
We assessed the link between two manifestations of structural racism-historical redlining and contemporary racial residential segregation-and baseline and 10-year changes in leukocyte telomere length (LTL).
We assessed the link between two manifestations of structural racism-historical redlining and contemporary racial residential segregation-and baseline and 10-year changes in leukocyte telomere length (LTL).
Longevity Relevance Analysis
(3)
The paper investigates the associations between structural racism and leukocyte telomere length, which is a biomarker associated with aging and cellular senescence. While it touches on factors that may influence aging processes, the focus on structural racism does not directly address root causes of aging or lifespan extension. The findings may contribute to understanding social determinants of health in relation to aging but are unlikely to lead to significant advancements in longevity research. Thus, it is rated as a solid research contribution with limited impact.
Meilin Hu, Ruiqi Liu, Xiaoyu Chen ...
· Periodontal Ligament
· Tianjin Key Laboratory of Oral Soft and Hard Tissues Restoration and Regeneration, Tianjin Medical University School of Stomatology, Tianjin Medical University, Heping, China.
· pubmed
Periodontal ligament mesenchymal stem cells (PDLSCs) are a promising cell resource for stem cell-based regenerative medicine in dentistry, but they inevitably acquire a senescent phenotype after prolonged in vitro expansion. The key regulators of PDLSCs during replicative senesce...
Periodontal ligament mesenchymal stem cells (PDLSCs) are a promising cell resource for stem cell-based regenerative medicine in dentistry, but they inevitably acquire a senescent phenotype after prolonged in vitro expansion. The key regulators of PDLSCs during replicative senescence remain unclear. Here, we sought to elucidate the role of metabolomic changes in determining the cellular senescence of PDLSCs. PDLSCs were cultured to passages 4, 10, and 20. The senescent phenotypes of PDLSCs were detected, and metabolomics analysis was performed. We found that PDLSCs manifested senescence phenotype during passaging. Metabolomics analysis showed that the metabolism of replicative senescence in PDLSCs varied significantly. The AMP-activated protein kinase (AMPK) signaling pathway was closely related to adenosine monophosphate (AMP) levels. The AMP:ATP ratio increased in senescent PDLSCs; however, the levels of p-AMPK,
Longevity Relevance Analysis
(3)
The paper investigates the metabolomic changes associated with replicative senescence in periodontal ligament stem cells, which is relevant to understanding cellular aging processes. However, while it contributes to the knowledge of stem cell behavior and the role of AMPK signaling in senescence, the findings are more incremental than groundbreaking. The implications for longevity research are limited, as the focus is on a specific cell type in a dental context rather than broader mechanisms of aging or lifespan extension.
Caiyan Liu, Jieyong Du, Ji Yang ...
· Drugs, Chinese Herbal
· Key Laboratory of Cell Proliferation and Regulation Biology, Ministry of Education, Department of Biology, Faculty of Arts and Sciences, Beijing Normal University, Zhuhai, 519087, China; School of Chinese Materia Medica, Guangdong Pharmaceutical University, Guangzhou, 510006, China.
· pubmed
Brain aging can promote neuronal damage, contributing to aging-related diseases like memory dysfunction. Buyang Huanwu Decoction (BYHWD), a traditional Chinese medicine formula known for tonifying qi and activating blood circulation, shows neuroprotective properties. Despite this...
Brain aging can promote neuronal damage, contributing to aging-related diseases like memory dysfunction. Buyang Huanwu Decoction (BYHWD), a traditional Chinese medicine formula known for tonifying qi and activating blood circulation, shows neuroprotective properties. Despite this, the specific mechanism by which BYHWD improves age-associated memory impairment (AAMI) has not been explored in existing literature.
Longevity Relevance Analysis
(3)
The paper investigates the mechanism by which Buyang Huanwu Decoction ameliorates age-associated memory impairment. This research is relevant as it explores potential interventions targeting the underlying mechanisms of cognitive decline associated with aging.
Peng Chen, Lining Wu, Jiexin Lei ...
· Coumarins
· Department of Pharmacy, Renmin Hospital of Wuhan University, Wuhan, Hubei. Electronic address: 2282968908@qq.com.
· pubmed
The current study aimed to evaluate the preventive effects of urolithin C (Uro C), a gut microbial metabolite of ellagitannins on D-galactose (D-gal)-induced brain damage during the aging process and to elucidate the underlying mechanisms. In our study, the protective effect of U...
The current study aimed to evaluate the preventive effects of urolithin C (Uro C), a gut microbial metabolite of ellagitannins on D-galactose (D-gal)-induced brain damage during the aging process and to elucidate the underlying mechanisms. In our study, the protective effect of Uro C on D-gal-induced BV2 microglia cell-mediated neuroinflammation damage in primary cortical neurons in vitro was confirmed. The results in an aging model in vivo induced by D-gal demonstrated that Uro C prevented D-gal-induced memory impairment, long-term potentiation (LTP) damage, and synaptic dysfunction through behavioral, electrophysiological, and histological examinations. Additionally, amyloidogenesis was observed in the central nervous system. The findings indicated that Uro C exhibited a preventive effect on the D-gal-induced elevation of β-amyloid (1-42 specific) (Aβ
Longevity Relevance Analysis
(3)
The paper investigates the effects of urolithin C on cognitive impairment and neuroinflammation in aging mice, which aligns with longevity research by addressing mechanisms that may contribute to age-related cognitive decline. However, while the findings are interesting, they primarily focus on a specific compound's effects rather than addressing broader root causes of aging or lifespan extension. Thus, the impact is solid but limited in scope.
Jiayu Yan, Siyi Chen, Zimei Yi ...
· Cellular Senescence
· Shanghai Engineering Research Center of Tooth Restoration and Regeneration & Research Institute of Stomatology & Stomatological Hospital and Dental School, Tongji University, Shanghai, China.
· pubmed
During the aging process or disease progression, normal cells and tissues in the body undergo various stresses, leading to cell damage and the need for repair, adaptation, apoptosis, or defense responses. Cellular senescence is a key player in this process, influencing the rate o...
During the aging process or disease progression, normal cells and tissues in the body undergo various stresses, leading to cell damage and the need for repair, adaptation, apoptosis, or defense responses. Cellular senescence is a key player in this process, influencing the rate of aging and disease progression. It can be triggered by different stress factors, resulting in irreversible cell cycle arrest and functional decline. Senescent cells often show high expression of cell cycle factors such as p21 and p16, which are involved in cell cycle arrest. p16 has long been recognized as a significant marker of aging. Recent evidence suggests that p21
Longevity Relevance Analysis
(3)
The paper discusses the role of p21 in cellular senescence, which is directly related to the mechanisms of aging and age-related diseases. While it addresses important aspects of cellular senescence, the focus appears to be more on the characterization of p21 rather than on innovative approaches to mitigate aging or its root causes. Thus, it contributes solid research but lacks significant implications for advancing the field of longevity research.
Rubens Sautchuk, John Martinez, Sarah E Catheline ...
· Peptidyl-Prolyl Isomerase F
· Center for Musculoskeletal Research, University of Rochester, Rochester, NY 14624, USA.
· pubmed
Mitochondrial Permeability Transition Pore (MPTP) and its key positive regulator, Cyclophilin D (CypD), control activity of cell oxidative metabolism important for differentiation of stem cells of various lineages including osteogenic lineage. Our previous work (Sautchuk et al., ...
Mitochondrial Permeability Transition Pore (MPTP) and its key positive regulator, Cyclophilin D (CypD), control activity of cell oxidative metabolism important for differentiation of stem cells of various lineages including osteogenic lineage. Our previous work (Sautchuk et al., 2022) showed that CypD gene, Ppif, is transcriptionally repressed during osteogenic differentiation by regulatory Smad transcription factors in BMP canonical pathway, a major driver of osteoblast (OB) differentiation. Such a repression favors closure of the MPTP, priming OBs to higher usage of mitochondrial oxidative metabolism. The physiological role of CypD/MPTP regulation was demonstrated by its inverse correlation with BMP signaling in aging and bone fracture healing in addition to the negative effect of CypD gain-of-function (GOF) on bone maintenance. Here we show evidence that CypD GOF also negatively affects bone development and growth as well as fracture healing in adult mice. Developing craniofacial and long bones presented with delayed ossification and decreased growth rate, respectively, whereas in fracture, bony callus volume was diminished. Given that Genome Wide Association Studies showed that PPIF locus is associated with both body height and bone mineral density, our new data provide functional evidence for the role of PPIF gene product, CypD, and thus MPTP in bone growth and repair.
Longevity Relevance Analysis
(4)
The paper investigates the role of Cyclophilin D and the mitochondrial permeability transition pore in bone development and fracture repair, linking these processes to aging and bone health. While it addresses mechanisms that could influence longevity through bone maintenance and repair, the findings are more focused on specific biological processes rather than directly targeting the root causes of aging or lifespan extension. Thus, it presents solid research but with limited broader implications for longevity research.
Rodrigo Balsinha Pedroso, Lícia Torres, Lucas Araújo Ventura ...
· COVID-19
· Faculdade de Medicina, Instituto de Medicina Molecular, Universidade de Lisboa, Av. Prof. Egas Moniz, 1649, 1649-028, Lisboa, Portugal.
· pubmed
Risk factors for the development of severe COVID-19 include several comorbidities, but age was the most striking one since elderly people were disproportionately affected by SARS-CoV-2 infection. Among the reasons for this markedly unfavorable response in the elderly, immunosenes...
Risk factors for the development of severe COVID-19 include several comorbidities, but age was the most striking one since elderly people were disproportionately affected by SARS-CoV-2 infection. Among the reasons for this markedly unfavorable response in the elderly, immunosenescence and inflammaging appear as major drivers of this outcome. A finding that was also notable was that hospitalized patients with severe COVID-19 have an accumulation of senescent T cells, suggesting that immunosenescence may be aggravated by SARS-CoV-2 infection. The present work was designed to examine whether these immunosenescence changes are characteristic of COVID-19 and whether it is dependent on disease severity using cross-sectional and longitudinal studies. Our cross-sectional data show that COVID-19, but not other respiratory infections, rapidly increased cellular senescence and exhaustion in CD4 and CD8 T cells during early infection. In addition, longitudinal analyses with patients from Brazil and Portugal provided evidence of increased frequencies of senescent and exhausted T cells over a 7-d period in patients with mild/moderate and severe COVID-19. Altogether, the study suggests that accelerated immunosenescence in CD4 and especially CD8 T-cell compartments may represent a common and unique outcome of SARS-CoV2 infection.
Longevity Relevance Analysis
(4)
The paper is relevant to longevity research as it investigates the accelerated immunosenescence of T cells during SARS-CoV-2 infection, which is a significant aspect of aging and age-related immune decline. However, while it provides solid insights into the effects of COVID-19 on T cell senescence, the findings are primarily focused on a specific disease context rather than addressing broader mechanisms of aging or potential interventions for lifespan extension. Thus, it represents a solid contribution but with limited impact on the overall field of longevity research.
Seow Neng Chan, Jun Wei Pek
· Introns
· Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore, Singapore.
· pubmed
Ever since their introduction a decade ago, stable introns, a type of noncoding (nc)RNAs, are found to be key players in different important cellular processes acting through regulation of gene expression and feedback loops to maintain cellular homeostasis. Despite being commonly...
Ever since their introduction a decade ago, stable introns, a type of noncoding (nc)RNAs, are found to be key players in different important cellular processes acting through regulation of gene expression and feedback loops to maintain cellular homeostasis. Despite being commonly regarded as useless byproducts, recent studies in yeast suggested that stable introns are essential for cell survivability under starvation. In Drosophila, we found that a stable intron, sisR-1, has a direct effect in regulating mitochondrial dynamics during short-term fasting and subsequently improved overall oocyte quality. We speculated that the beneficial effects implicated by sisR-1 is through the activation of mitohormesis, an interesting phenomenon in mitochondrial biology. Mitohormesis is suggested to improve health span and lifespan of cells and organisms, but the involvement of ncRNAs is not well-documented. Here, we discuss the potential role of sisR-1 and other ncRNAs in activating mitohormesis and the possible applications in improving cellular and organismal health.
Longevity Relevance Analysis
(3)
The paper discusses the role of stable introns and noncoding RNAs in activating mitohormesis, which is linked to improving health span and potentially lifespan. This focus on cellular mechanisms that could influence aging processes makes it relevant to longevity research. However, the findings appear to be preliminary and primarily exploratory, suggesting a solid but limited impact on the field.
Ram Prajit, Rasa Saenno, Kornrawee Suwannakot ...
· Galactose
· Neurogenesis Research Group, Department of Anatomy, Faculty of Medicine, Khon Kaen University, Khon Kaen, 40002, Thailand.
· pubmed
Oxidative stress-induced neuronal apoptosis is primarily involved in brain aging and impaired hippocampal neurogenesis. Long-term D-galactose administration increases oxidative stress related to brain aging. Chrysin, a subtype of flavonoids, exhibits neuroprotective effects, part...
Oxidative stress-induced neuronal apoptosis is primarily involved in brain aging and impaired hippocampal neurogenesis. Long-term D-galactose administration increases oxidative stress related to brain aging. Chrysin, a subtype of flavonoids, exhibits neuroprotective effects, particularly its antioxidant properties. To elucidate the neuroprotection of chrysin on neuronal apoptosis and an impaired hippocampal neurogenesis relevant to oxidative damage in D-galactose-induced brain aging, male Sprague Dawley rats were allocated into vehicle control, D-galactose, chrysin, and cotreated rats. The rats received their respective treatments daily for 8 weeks. The reactions of scavenging enzymes, protein regulating endogenous antioxidant defense, and anti-apoptotic protein expression were significantly reduced in the hippocampus and prefrontal cortex of the animals receiving D-galactose. Conversely, product of oxidative damage and apoptotic protein expressions were significantly elevated in both cortical areas of the D-galactose group. In hippocampal neurogenesis, significant upregulation of cell cycle arrest and decrease in differentiated protein expression were detected after D-galactose administration. Nevertheless, chrysin supplementation significantly mitigated all negative effects in animals receiving D-galactose. This study demonstrates that chrysin likely attenuates brain aging induced by D-galactose by enhancing scavenging enzyme activities and reducing oxidative stress, neuronal apoptosis, and the impaired hippocampal neurogenesis.
Longevity Relevance Analysis
(3)
The paper investigates the neuroprotective effects of chrysin against oxidative stress-induced neuronal apoptosis and impaired neurogenesis, which are relevant to the mechanisms of brain aging. However, while it contributes to understanding potential interventions for age-related decline, the findings are incremental and primarily focus on a specific compound rather than addressing broader mechanisms of aging or longevity. Thus, the impact is limited.
Jieyi Zuo, Juan Liao, Lilin Zhu ...
· Zoledronic Acid
· Department of Orthopedics and Traumatology, The affiliated Guangdong Second Provincial General Hospital of Jinan University, Guangzhou, PR China.
· pubmed
Osteoporosis is one of the most prevalent age-related diseases worldwide. It is characterized by a systemic deterioration in bone strength (bone density and bone mass), leading to an increase in fragility fractures. The complex pathological environment of osteoporosis presents a ...
Osteoporosis is one of the most prevalent age-related diseases worldwide. It is characterized by a systemic deterioration in bone strength (bone density and bone mass), leading to an increase in fragility fractures. The complex pathological environment of osteoporosis presents a significant challenge to the induction of bone regeneration under osteoporotic conditions. Therefore, the development of a system for local delivery of active substances with osteoinductive effects is of practical significance in the clinical treatment of osteoporosis. In this study, we successfully loaded the anti-osteoporotic small molecule drug zoledronate (ZOL) into calcium alginate to prepare a biologically functional hydrogel, designated as ALG-ZOL-Ca. The prepared ALG-ZOL-Ca hydrogel gels quickly, making the hydrogel easy to inject and adapt to irregularly shaped bone defects, and simultaneously exhibits good bioactivity and osteoconductivity. The RT-qPCR results suggested that this hydrogel effectively promoted the expression levels of β-catenin and Axin2, which indicating a stimulative effect on the Wnt/β-catenin pathway in vitro. Moreover, ALG-ZOL-Ca hydrogel effectively promoted the expression of the OCN and SP7 genes. Therefore, this study proposes a new functional composite hydrogel that provides a potential treatment strategy for osteoporosis.
Longevity Relevance Analysis
(3)
The paper addresses osteoporosis, a prevalent age-related disease, and proposes a novel treatment strategy that could potentially improve bone regeneration. However, it primarily focuses on symptom management rather than addressing the underlying mechanisms of aging or longevity. The findings contribute to the field of osteoporosis treatment but do not significantly advance our understanding of aging itself. Thus, while relevant, the impact is limited.
Jacob A Quaytman, Natalie L David, Sharini Venugopal ...
· Fasting
· Division of Endocrinology and Metabolism, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213, USA.
· pubmed
Caloric restriction prolongs lifespan in model organisms and improves metrics of aging-related diseases in humans, but daily compliance is challenging. Intermittent fasting improves metrics of lipid and glucose metabolism in the setting of weight loss but whether these metrics ar...
Caloric restriction prolongs lifespan in model organisms and improves metrics of aging-related diseases in humans, but daily compliance is challenging. Intermittent fasting improves metrics of lipid and glucose metabolism in the setting of weight loss but whether these metrics are improved independent of weight loss is not known.
Longevity Relevance Analysis
(3)
The paper investigates intermittent fasting and its effects on triglyceride metabolism, which is relevant to understanding metabolic processes associated with aging. However, the focus on weight loss metrics and the design of a controlled trial suggest that while it contributes to the field, it does not present groundbreaking findings or address the root causes of aging directly. Thus, it is a solid piece of research but with limited impact.
Cellular senescence is a response that irreversibly arrests stressed cells thus providing a potent tumor suppressor mechanism. In parallel, senescent cells exhibit an immunogenic secretome called SASP (senescence-associated secretory phenotype) that impairs tissue homeostasis and...
Cellular senescence is a response that irreversibly arrests stressed cells thus providing a potent tumor suppressor mechanism. In parallel, senescent cells exhibit an immunogenic secretome called SASP (senescence-associated secretory phenotype) that impairs tissue homeostasis and is involved in numerous age-related diseases. Senescence establishment is achieved through the unfolding of a profound transcriptional reprogramming together with morphological changes. These alterations are accompanied by important metabolic adaptations characterized by biosynthetic pathways reshuffling and lipid remodeling. In this mini-review we highlight the intricate links between lipid metabolism and the senescence program and we discuss the potential interventions on lipid pathways that can alleviate the senescence burden.
Longevity Relevance Analysis
(3)
The paper discusses the relationship between lipid metabolism and cellular senescence, which is relevant to understanding the mechanisms of aging and potential interventions that could alleviate age-related burdens. However, the focus on lipid remodeling in the context of senescence appears to be more of a solid research contribution rather than a groundbreaking advance, thus the impact score reflects a limited but meaningful contribution to the field.
Ayumi Toba, Joji Ishikawa
· Sarcopenia
· Department of Cardiology, Tokyo Metropolitan Institute for Geriatrics and Gerontology, Tokyo, Japan. ayumin3250@gmail.com.
· pubmed
Sarcopenia, defined as progressive loss of muscle mass, function, and strength is an aging-related disease that share common pathophysiology with frailty. Sarcopenia is one of the risk factors of hypertension. Insulin resistance, oxidative stress, imbalance of catabolism and anab...
Sarcopenia, defined as progressive loss of muscle mass, function, and strength is an aging-related disease that share common pathophysiology with frailty. Sarcopenia is one of the risk factors of hypertension. Insulin resistance, oxidative stress, imbalance of catabolism and anabolism, and chronic inflammation are the underlying mechanisms that explain the association between hypertension and sarcopenia. Exercise is beneficial for older hypertensive patients in prevention of sarcopenia and improvement to normal state. It also attributes to cardiovascular risk reduction and prevention of falls. In this review article, we summarize latest issues about sarcopenia and exercise.
Longevity Relevance Analysis
(3)
The paper discusses the relationship between sarcopenia and hypertension, both of which are age-related conditions. While it highlights the importance of exercise in mitigating these issues, it primarily focuses on treating symptoms rather than addressing the root causes of aging. The findings contribute to the understanding of sarcopenia and its implications for older adults, but the overall impact on the field of longevity research is limited.
Jianping Hu, Yiran Yao, Tongxin Ge ...
· Biological Specimen Banks
· Department of Ophthalmology, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200011, PR China.
· pubmed
Consumption of ultra-processed foods (UPF) has been associated with increased risks of various age-related diseases. However, the potential association between UPF consumption and age-related eye diseases (AREDs) remains unclear. We aim to assess the associations between consumpt...
Consumption of ultra-processed foods (UPF) has been associated with increased risks of various age-related diseases. However, the potential association between UPF consumption and age-related eye diseases (AREDs) remains unclear. We aim to assess the associations between consumption of UPF and risk of AREDs including age-related macular degeneration (AMD), cataract and glaucoma.
Longevity Relevance Analysis
(3)
The paper investigates the association between ultra-processed food consumption and age-related eye diseases, which are indeed relevant to aging and longevity. However, it primarily focuses on the correlation rather than addressing root causes of aging or proposing interventions for lifespan extension. The findings may contribute to understanding dietary impacts on age-related diseases, but the overall impact on the field of longevity research is limited.
Giacomo G Rossetti, Noëlle Dommann, Angeliki Karamichali ...
· DNA Replication
· Department of Molecular and Cellular Biology, University of Geneva, Geneva 1205, Switzerland.
· pubmed
The genome duplication program is affected by multiple factors in vivo, including developmental cues, genotoxic stress, and aging. Here, we monitored DNA replication initiation dynamics in regenerating livers of young and old mice after partial hepatectomy to investigate the impa...
The genome duplication program is affected by multiple factors in vivo, including developmental cues, genotoxic stress, and aging. Here, we monitored DNA replication initiation dynamics in regenerating livers of young and old mice after partial hepatectomy to investigate the impact of aging. In young mice, the origin firing sites were well defined; the majority were located 10-50 kb upstream or downstream of expressed genes, and their position on the genome was conserved in human cells. Old mice displayed the same replication initiation sites, but origin firing was inefficient and accompanied by a replication stress response. Inhibitors of the ATR checkpoint kinase fully restored origin firing efficiency in the old mice but at the expense of an inflammatory response and without significantly enhancing the fraction of hepatocytes entering the cell cycle. These findings unveil aging-dependent replication stress and a crucial role of ATR in mitigating the stress-associated inflammation, a hallmark of aging.
Longevity Relevance Analysis
(4)
The paper investigates the dynamics of DNA replication in the context of aging, specifically focusing on the replication stress observed in older mice. This research addresses a fundamental aspect of cellular aging and the mechanisms that may contribute to age-related decline, making it relevant to longevity research. However, while the findings are solid and contribute to our understanding of aging processes, they do not present a major breakthrough or transformative implications for the field, thus warranting a moderate impact score.
Lizhi Yu, Qin Zhang, Xiaoyang Li ...
· IBRO neuroscience reports
· Department of Radiology, Taian Municipal Hospital, Taian, Shandong, China.
· pubmed
Fluid intelligence is an individual's innate ability to cope with complex situations and is gradually reduced across adults aging. The realization of fluid intelligence requires the simultaneous activity of multiple brain regions and depends on the structural connection of distri...
Fluid intelligence is an individual's innate ability to cope with complex situations and is gradually reduced across adults aging. The realization of fluid intelligence requires the simultaneous activity of multiple brain regions and depends on the structural connection of distributed brain regions. Uncovering the structural features of brain connections associated with fluid intelligence decline will provide reference for the development of intervention and treatment programs for cognitive decline. Using structural magnetic resonance imaging data of 454 healthy participants (18-87 years) from the Cam-CAN dataset, we constructed structural similarity network for each participant and calculated the node degree. Spearman correlation analysis showed that age was positively correlated with degree centrality in the cingulate cortex, left insula and subcortical regions, while negatively correlated with that in the orbito-frontal cortex, right middle temporal and precentral regions. Partial least squares (PLS) regression showed that the first PLS components explained 32 % (second PLS component: 20 %,
Longevity Relevance Analysis
(3)
The paper investigates age-related changes in brain connectivity and their correlation with fluid intelligence, which is relevant to understanding cognitive decline associated with aging. However, it primarily focuses on correlational findings rather than addressing the root causes of aging or proposing interventions that could significantly alter the aging process. Thus, while it contributes to the field of cognitive aging, its impact is limited and more incremental than transformative.
Kristen M Beavers, Brianna R Wolle, Jamy D Ard ...
· Alendronate
· Department of Health and Exercise Science, Wake Forest University, Winston-Salem, NC, USA. Electronic address: beaverkm@wfu.edu.
· pubmed
Among older adults living with obesity, intentional weight loss (WL) improves prognosis of many comorbidities. However, concomitant decline in bone mineral density (BMD) limits overall benefit of WL by increasing osteoporotic fracture risk. Identification of intervention strategi...
Among older adults living with obesity, intentional weight loss (WL) improves prognosis of many comorbidities. However, concomitant decline in bone mineral density (BMD) limits overall benefit of WL by increasing osteoporotic fracture risk. Identification of intervention strategies to maximize body fat loss, while minimizing harm to the musculoskeletal system, is an important area of clinical research. The main objective of the Bone, Exercise, Alendronate, and Caloric Restriction (BEACON) trial (NCT05764733) is to compare the independent and combined effects of a 12-month intervention of resistance training (RT) plus bone-loading exercises and bisphosphonate use on dietary WL-associated bone loss among 308 older (≥60 years) adults living with an indication for WL and bisphosphonate use.
Longevity Relevance Analysis
(3)
The paper addresses the important issue of bone health in older adults undergoing weight loss, which is a significant concern in the context of aging and longevity. However, it primarily focuses on treatment strategies rather than addressing the root causes of aging or lifespan extension. The findings may contribute to better management of age-related conditions but do not represent a major breakthrough in the field of longevity research.
Stela Vujosevic, Celeste Limoli, Igor Kozak
· Macular Degeneration
· Department of Biomedical, Surgical and Dental Sciences, University of Milan, Milan, Italy. stela.vujosevic@unimi.it.
· pubmed
Age-related macular degeneration (AMD) and age-related neurological diseases (ANDs), such as Alzheimer's and Parkinson's Diseases, are increasingly prevalent conditions that significantly contribute to global morbidity, disability, and mortality. The retina, as an accessible part...
Age-related macular degeneration (AMD) and age-related neurological diseases (ANDs), such as Alzheimer's and Parkinson's Diseases, are increasingly prevalent conditions that significantly contribute to global morbidity, disability, and mortality. The retina, as an accessible part of the central nervous system (CNS), provides a unique window to study brain aging and neurodegeneration. By examining the associations between AMD and ANDs, this review aims to highlight novel insights into fundamental mechanisms of aging and their role in neurodegenerative disease progression. This review integrates knowledge from the emerging field of aging research, which identifies common denominators of biological aging, specifically loss of proteostasis, impaired macroautophagy, mitochondrial dysfunction, and inflammation. Finally, we emphasize the clinical relevance of these pathways and the potential for cross-disease therapies that target common aging hallmarks. Identifying these shared pathways could open avenues to develop therapeutic strategies targeting mechanisms common to multiple degenerative diseases, potentially attenuating disease progression and promoting the healthspan.
Longevity Relevance Analysis
(4)
The paper claims that common mechanisms of aging, such as loss of proteostasis and mitochondrial dysfunction, contribute to the progression of age-related macular degeneration and neurological disorders. This research is relevant as it explores fundamental aging mechanisms that could lead to therapeutic strategies targeting the root causes of multiple age-related diseases.
Yun-Ling Zheng, Xingjia Wu, Madeline Williams ...
· In Situ Hybridization, Fluorescence
· Cancer Prevention and Control Program, Department of Oncology, Georgetown University Medical Center, Georgetown University, Washington, DC 20057, USA.
· pubmed
The human telomere system is highly dynamic. Both short and long leucocyte average telomere lengths (aTL) are associated with an increased risk of cancer and early death, illustrating the complex relationship between TL and human health and the importance of assessing TL distribu...
The human telomere system is highly dynamic. Both short and long leucocyte average telomere lengths (aTL) are associated with an increased risk of cancer and early death, illustrating the complex relationship between TL and human health and the importance of assessing TL distributions with single TL analysis. A DNA microarray and telomere fluorescent in situ hybridization (DNA-array-FISH) approach was developed to measure the base-pair (bp) lengths of single telomeres. On average 32000 telomeres were measured per DNA sample with one microarray chip assaying 96 test DNA samples. Various telomere parameters, i.e. aTL and the frequency of short/long telomeres, were computed to delineate TL distribution. The intra-assay and inter-assay coefficient of variations of aTL ranged from 1.37% to 3.98%. The correlation coefficient (r) of aTL in repeated measurements ranged from 0.91 to 1.00, demonstrating high measurement precision. aTLs measured by DNA-array-FISH predicted aTLs measured by terminal restriction fragment (TRF) analysis with r ranging 0.87-0.99. A new accurate and high-throughput method has been developed to measure the bp lengths of single telomeres. The large number of single TL data provides an opportunity for an in-depth analysis of telomere dynamics and the complex relationship between telomere and age-related diseases.
Longevity Relevance Analysis
(4)
The paper presents a novel high-throughput method for analyzing telomere lengths, which is relevant to understanding the biological mechanisms of aging and age-related diseases. While it contributes to the field by providing a more precise and efficient way to measure telomere dynamics, the findings are more incremental than groundbreaking. The implications for longevity research are present, but the study does not directly address root causes of aging or propose significant interventions for lifespan extension.
Jiao Jiang, Huan Zhu, Ming Yang ...
· Nitrophenols
· Hospital for Skin Diseases, Institute of Dermatology, Chinese Academy of Medical Sciences & Peking Union Medical College, Nanjing, Jiangsu, China; Department of Dermatology, Hunan Key Laboratory of Medical Epigenomics, The Second Xiangya Hospital of Central South University, Changsha, Hunan, China; Key Laboratory of Basic and Translational Research on Immune-Mediated Skin Diseases, Chinese Academy of Medical Sciences, Nanjing, Jiangsu, China; Jiangsu Key Laboratory of Molecular Biology for Skin Diseases and STIs, Nanjing, Jiangsu, China.
· pubmed
Cutaneous lupus erythematosus (CLE) is an autoimmune disease characterized by chronic skin inflammation and recurrent lesions. Recent studies have highlighted the pivotal role of cellular senescence in the pathogenesis of LE, and the efficacy of senolytic B-cell lymphoma 2 (BCL-2...
Cutaneous lupus erythematosus (CLE) is an autoimmune disease characterized by chronic skin inflammation and recurrent lesions. Recent studies have highlighted the pivotal role of cellular senescence in the pathogenesis of LE, and the efficacy of senolytic B-cell lymphoma 2 (BCL-2) inhibitors in selectively eliminating senescent cells has been demonstrated across diverse diseases. However, the therapeutic potential of senolytic BCL-2 inhibitors in treating CLE remains uncertain. In this study, we introduced a novel topical application of senolytic ABT-737 gel, showing its efficacy in ameliorating skin lesions, histopathological characteristics, and immune complex deposition of C3 and IgG in a humanized CLE mouse model. Mechanistically, the senescent cells in skin lesions of CLE mice were reduced through the application of ABT-737 gel. These findings suggest that the senolytic ABT-737 gel delayed the progression of CLE by targeting senescent cell populations. In conclusion, our study provides promising preclinical evidence supporting the therapeutic potential of ABT-737 gel for CLE treatment.
Longevity Relevance Analysis
(4)
The paper is relevant to longevity research as it explores the role of senolytic BCL-2 inhibitors in targeting senescent cells, which are implicated in the aging process and age-related diseases. The findings suggest a potential therapeutic approach to mitigate the effects of cellular senescence in cutaneous lupus erythematosus, linking it to broader implications for aging. However, the study is preclinical and focuses on a specific application rather than a comprehensive solution to aging, limiting its overall impact.
Xiaojie Yu, Yang Cao, Xinyi Li ...
· Mendelian Randomization Analysis
· Department of Anesthesiology, Guangzhou Red Cross Hospital, Jinan University, Guangzhou, China.
· pubmed
Arterial stiffness is an emerging indicator of cardiovascular risk, but its causal relationship with a variety of age-related diseases is unclear. The objective is to assess the causal relationship between arterial stiffness index (ASI) and age-related diseases by Mendelian rando...
Arterial stiffness is an emerging indicator of cardiovascular risk, but its causal relationship with a variety of age-related diseases is unclear. The objective is to assess the causal relationship between arterial stiffness index (ASI) and age-related diseases by Mendelian randomization (MR) analysis. We obtained instrumental variables associated with age-related diseases from genome-wide association studies (GWAS) of 484,598 European individuals, and data for ASI were obtained from the UK Biobank GWAS of 127,127 participants. We used the inverse variance-weighted as the primary analysis method. In addition, several sensitivity analyses including MR-Egger, weighted-median (WM), Mendelian randomization pleiotropy residual sum and outlier, and Cochran's Q test were performed to test the robustness of the results. Reverse MR analysis was also performed to assess reverse causal relationships between age-related diseases and ASI. We verified the causal relationship between eight age-related diseases and ASI, of which cardiovascular disease (
Longevity Relevance Analysis
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The paper claims to establish a causal relationship between arterial stiffness index and various age-related diseases. The study addresses a potential underlying mechanism related to aging, which is relevant to understanding and possibly mitigating age-related health issues.
Xiaoqing Xu, Jinxia Hu, Xibo Pang ...
· Aging
· Department of Nutrition and Food Hygiene, School of Public Health, The National Key Discipline, Harbin Medical University, Harbin, 150081, China.
· pubmed
This study aimed to evaluate the relationship between plant protein, animal protein and biological aging through different dimensions of biological aging indices. Then explore the effects of substitution of plant protein, animal protein, and their food sources on biological aging...
This study aimed to evaluate the relationship between plant protein, animal protein and biological aging through different dimensions of biological aging indices. Then explore the effects of substitution of plant protein, animal protein, and their food sources on biological aging.
Longevity Relevance Analysis
(3)
The study investigates the relationship between dietary protein sources and biological aging, which aligns with the broader themes of longevity research. However, while it contributes to understanding dietary impacts on aging, the findings are likely to be incremental rather than transformative, limiting its overall impact on the field.
Yijia Zhang, Xueer Wang, Jianyuan Huang ...
· Skin Aging
· GDMPA Key Laboratory of key Technologies for Cosmetics Safety and Efficacy Evaluation, NMPA Key Laboratory for Safety Evaluation of Cosmetics, Guangdong Provincial Key Laboratory of Construction and Detection in Tissue Engineering, Department of Histology and Embryology, School of Basic Medical Sciences, Southern Medical University, Guangzhou, China.
· pubmed
Skin aging has been associated with the onset of various skin issues, and recent studies have identified an increase in Cdc42 activity in naturally aging mice. While previous literature has suggested that CASIN, a specific inhibitor of Cdc42 activity, may possess anti-aging prope...
Skin aging has been associated with the onset of various skin issues, and recent studies have identified an increase in Cdc42 activity in naturally aging mice. While previous literature has suggested that CASIN, a specific inhibitor of Cdc42 activity, may possess anti-aging properties, its specific effects on the epidermis and dermis, as well as the underlying mechanisms in naturally aging mice, remain unclear. Our study revealed that CASIN demonstrated the ability to increase epidermal and dermal thickness, enhance dermal-epidermal junction, and stimulate collagen and elastic fiber synthesis in 9-, 15-, and 24-month-old C57BL/6 mice in vivo. Moreover, CASIN was found to enhance the proliferation, differentiation, and colony formation and restore the cytoskeletal morphology of primary keratinocytes in naturally aging skin in vitro. Furthermore, the anti-aging properties of CASIN on primary fibroblasts in aging mice were mediated by the ribosomal protein RPL4 using proteomic sequencing, influencing collagen synthesis and cytoskeletal morphology both in vitro and in vivo. Meanwhile, both subcutaneous injection and topical application exhibited anti-aging effects for a duration of 21 days. Additionally, CASIN exhibited anti-inflammatory properties, while reduced expression of RPL4 was associated with increased inflammation in the skin of naturally aging mice. Taken together, our results unveil a novel function of RPL4 in skin aging, providing a foundational basis for future investigations into ribosomal proteins. And CASIN shows promise as a potential anti-aging agent for naturally aging mouse skin, suggesting potential applications in the field.
Longevity Relevance Analysis
(3)
The paper investigates the anti-aging effects of CASIN on skin aging in mice, focusing on mechanisms that may contribute to the aging process, specifically through the ribosomal protein RPL4. While it provides insights into potential interventions for skin aging, the findings are relatively incremental and primarily focused on a specific compound rather than addressing broader mechanisms of aging or lifespan extension. Thus, while it is relevant to longevity research, its impact is limited.
John Akrofi Kubi, Augustine Suurinobah Brah, Kenneth Man Chee Cheung ...
· Bioactive materials
· Department of Orthopaedics and Traumatology, Li Ka Shing Faculty of Medicine, The University of Hong Kong (HKU), PR China.
· pubmed
Age-related osteoporosis is a metabolic skeletal disorder caused by estrogen deficiency in postmenopausal women. Prolonged use of anti-osteoporotic drugs such as bisphosphonates and FDA-approved anti-resorptive selective estrogen receptor modulators (SERMs) has been associated wi...
Age-related osteoporosis is a metabolic skeletal disorder caused by estrogen deficiency in postmenopausal women. Prolonged use of anti-osteoporotic drugs such as bisphosphonates and FDA-approved anti-resorptive selective estrogen receptor modulators (SERMs) has been associated with various clinical drawbacks. We recently discovered a low-molecular-weight biocompatible and osteoanabolic phytoprotein, called HKUOT-S2 protein (32 kDa), from
Longevity Relevance Analysis
(3)
The paper addresses osteoporosis, a condition linked to aging, and explores a novel phytoprotein that may modulate estrogen receptors to suppress its development. While it presents a potential therapeutic approach, it primarily focuses on treatment rather than addressing the underlying causes of aging or longevity. Thus, its impact is solid but limited in the broader context of longevity research.
Alicia J Campbell, Toomas Erik Anijärv, Thomas Pace ...
· Attention
· Thompson Institute, University of the Sunshine Coast, Birtinya, QLD, Australia. Electronic address: alicia.campbell@research.usc.edu.au.
· pubmed
While structural and biochemical brain changes are well-documented in ageing, functional neuronal network differences, as indicated by electrophysiological markers, are less clear. Moreover, age-related changes in sustained attention and their associated electrophysiological corr...
While structural and biochemical brain changes are well-documented in ageing, functional neuronal network differences, as indicated by electrophysiological markers, are less clear. Moreover, age-related changes in sustained attention and their associated electrophysiological correlates are still poorly understood. To address this, we analysed cross-sectional baseline electroencephalography (EEG) and cognitive data from the Lifestyle Intervention Study for Dementia Risk Reduction (LEISURE). Participants were 96 healthy older adults, aged 50-84. We examined resting-state EEG periodic (individual alpha frequency [IAF], aperiodic-adjusted individual alpha power [aIAP]) and aperiodic (exponent and offset) activity, and their associations with age and sustained attention. Results showed associations between older age and slower IAF, but not aIAP or global aperiodic exponent and offset. Additionally, hierarchical linear regression revealed that after controlling for demographic variables, faster IAF was associated with better Sustained Attention to Response Task performance, and mediation analysis confirmed IAF as a mediator between age and sustained attention performance. These findings indicate that IAF may be an important marker of ageing, and a slower IAF may signal diminished cognitive processing capacity for sustained attention in older adults.
Longevity Relevance Analysis
(3)
The paper investigates the relationship between resting-state EEG markers and sustained attention in healthy aging, which is relevant to understanding cognitive decline associated with aging. However, it primarily focuses on correlational findings rather than addressing root causes of aging or proposing interventions for lifespan extension. The findings contribute to the existing literature on cognitive aging but do not present significant advancements that would have a major impact on the field.
Anca-Elena Dascălu, Christophe Furman, Steve Lancel ...
· Pyrazoles
· Health and Environment, Laboratory of Sustainable Chemistry and Health, Junia, F-59000, Lille, France.
· pubmed
In the context of age-related disorders, the receptor of advanced glycation end products (RAGE), plays a pivotal role in the pathogenesis of these conditions by triggering downstream signaling pathways associated with chronic inflammation and oxidative stress. Targeting this infl...
In the context of age-related disorders, the receptor of advanced glycation end products (RAGE), plays a pivotal role in the pathogenesis of these conditions by triggering downstream signaling pathways associated with chronic inflammation and oxidative stress. Targeting this inflammaging phenomenon with RAGE antagonists holds promise for interventions with broad implications in healthy aging and the management of age-related conditions. This study explores the structure-activity relationship (SAR) of pyrazoline-based RAGE antagonists synthesized using an ultrasound-assisted green one-pot two-steps methodology. Our investigation identifies phenylurenyl-pyrazoline 2 g as a promising candidate, demonstrating superior efficiency compared to the reference antagonist Azeliragon (IC
Longevity Relevance Analysis
(3)
The paper addresses the role of RAGE in age-related disorders and explores potential antagonists that could mitigate chronic inflammation and oxidative stress, which are key factors in the aging process. However, while it presents a novel synthesis method and identifies a promising candidate, the findings appear to be incremental rather than groundbreaking, limiting its overall impact on the field of longevity research.
Mahmood Akbar, Pranoy Toppo, Aamir Nazir
· Proteostasis
· Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India; Division of Toxicology and Experimental Medicine, CSIR-Central Drug Research Institute, Lucknow 226031, India.
· pubmed
Recent research has illuminated the profound bidirectional communication between the gastrointestinal tract and the brain, furthering our understanding of neurological ailments facilitating possible therapeutic strategies. Technological advancements in high-throughput sequencing ...
Recent research has illuminated the profound bidirectional communication between the gastrointestinal tract and the brain, furthering our understanding of neurological ailments facilitating possible therapeutic strategies. Technological advancements in high-throughput sequencing and multi-omics have unveiled significant alterations in gut microbiota and their metabolites in various neurological disorders. This review provides a thorough analysis of the role of microbiome-gut-brain axis in neurodegenerative disease pathology, linking it to reduced age-associated proteostasis. We discuss evidences that substantiate the existence of a gut-brain cross talk ranging from early clinical accounts of James Parkinson to Braak's hypothesis. In addition to understanding of microbes, the review particularly entails specific metabolites which are altered in neurodegenerative diseases. The regulatory effects of microbial metabolites on protein clearance mechanisms, proposing their potential therapeutic implications, are also discussed. By integrating this information, we advocate for a combinatory therapeutic strategy that targets early intervention, aiming to restore proteostasis and ameliorate disease progression. This approach not only provides a new perspective on the pathogenesis of neurodegenerative diseases but also highlights innovative strategies to combat the increasing burden of these age-related disorders.
Longevity Relevance Analysis
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The paper discusses the gut-brain axis and its implications for neurodegenerative diseases, linking it to age-associated proteostasis. While it addresses mechanisms that could be related to aging and proposes therapeutic strategies, it primarily focuses on treating symptoms of neurological disorders rather than addressing the root causes of aging itself. Thus, it contributes solid insights into the field but does not significantly advance the understanding of aging or lifespan extension.
Yuma Sugiyama, Yoichiro Kawabe, Tanenobu Harada ...
· Cellular Senescence
· Department of Inflammation and Immunosenescence, Geroscience Research Center, Research Institute, National Center for Geriatrics and Gerontology, Aichi, Japan.
· pubmed
The evidence of the correlation between cellular senescence and aging has increased in research with animal models. These models have been intentionally generated to target and regulate cellular senescent cells with the promoter activity of p16
The evidence of the correlation between cellular senescence and aging has increased in research with animal models. These models have been intentionally generated to target and regulate cellular senescent cells with the promoter activity of p16
Longevity Relevance Analysis
(4)
The paper addresses the elimination of senescent cells, which is a key aspect of aging research and has implications for longevity by potentially improving lipid metabolism in the context of skin aging. While the findings may contribute to the understanding of cellular senescence and its effects on aging, the impact appears to be solid but limited, as it focuses on a specific model and tissue type without broader implications for systemic aging or lifespan extension.
Dafna Pachter, Alon Kaplan, Gal Tsaban ...
· Diet, Mediterranean
· Faculty of Health Sciences, The Health & Nutrition Innovative International Research Center, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
· pubmed
We recently reported that Mediterranean (MED) and green-MED diets significantly attenuated age-related brain atrophy by ∼50% within 18 mo.
We recently reported that Mediterranean (MED) and green-MED diets significantly attenuated age-related brain atrophy by ∼50% within 18 mo.
Longevity Relevance Analysis
(4)
The paper investigates the effects of dietary interventions (Mediterranean and green-Mediterranean diets) on brain health, specifically focusing on neuroprotection and brain atrophy, which are relevant to aging and longevity. While the findings contribute to our understanding of how diet can influence brain aging, the impact is somewhat limited as it primarily addresses dietary effects rather than fundamental mechanisms of aging or lifespan extension. Thus, it represents solid research but does not significantly advance the field.
Tahir Muhammad, Stacey L Edwards, Allison C Morphis ...
· Caenorhabditis elegans
· Department of Cell Biology and Anatomy, New York Medical College, Valhalla, NY, USA.
· pubmed
Gametogenesis involves active protein synthesis and is proposed to rely on proteostasis. Our previous work in C. elegans indicates that germline development requires coordinated activities of insulin/IGF-1 signaling (IIS) and HSF-1, the central regulator of the heat shock respons...
Gametogenesis involves active protein synthesis and is proposed to rely on proteostasis. Our previous work in C. elegans indicates that germline development requires coordinated activities of insulin/IGF-1 signaling (IIS) and HSF-1, the central regulator of the heat shock response. However, the downstream mechanisms were not identified. Here, we show that depletion of HSF-1 from germ cells impairs chaperone gene expression, causing protein degradation and aggregation and, consequently, reduced fecundity and gamete quality. Conversely, reduced IIS confers germ cell resilience to HSF-1 depletion-induced protein folding defects and various proteotoxic stresses. Surprisingly, this effect was not mediated by an enhanced stress response, which underlies longevity in low IIS conditions, but by reduced ribosome biogenesis and translation rate. We found that IIS activates the expression of intestinal peptide transporter PEPT-1 by alleviating its repression by FOXO/DAF-16, allowing dietary proteins to be efficiently incorporated into an amino acid pool that fuels germline protein synthesis. Our data suggest this non-cell-autonomous pathway is critical for proteostasis regulation during gametogenesis.
Longevity Relevance Analysis
(4)
The paper explores the role of insulin/IGF-1 signaling in proteostasis during gametogenesis, which has implications for understanding the mechanisms of aging and longevity. While it identifies a non-cell-autonomous pathway that may influence germline health and resilience, the findings are more focused on specific cellular processes rather than directly addressing broader aging mechanisms or lifespan extension. Thus, while it contributes to the field, its impact is limited and more incremental than groundbreaking.
Sang Gyun Noh, Hyun Woo Kim, Seungwoo Kim ...
· Caloric Restriction
· Research Institute for Drug Development, Pusan National University, 2 Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan 46241, Republic of Korea.
· pubmed
Senoinflammation is characterized by an unresolved low-grade inflammatory process that affects multiple organs and systemic functions. This review begins with a brief overview of the fundamental concepts and frameworks of senoinflammation. It is widely involved in the aging of va...
Senoinflammation is characterized by an unresolved low-grade inflammatory process that affects multiple organs and systemic functions. This review begins with a brief overview of the fundamental concepts and frameworks of senoinflammation. It is widely involved in the aging of various organs and ultimately leads to progressive systemic degeneration. Senoinflammation underlying age-related inflammation, is causally related to metabolic dysregulation and the formation of senescence-associated secretory phenotype (SASP) during aging and age-related diseases. This review discusses the biochemical evidence and molecular biology data supporting the concept of senoinflammation and its regulatory processes, highlighting the anti-aging and anti-inflammatory effects of calorie restriction (CR). Experimental data from CR studies demonstrated effective suppression of various pro-inflammatory cytokines and chemokines, lipid accumulation, and SASP during aging. In conclusion, senoinflammation represents the basic mechanism that creates a microenvironment conducive to aging and age-related diseases. Furthermore, it serves as a potential therapeutic target for mitigating aging and age-related diseases.
Longevity Relevance Analysis
(4)
The paper addresses senoinflammation as a fundamental mechanism of aging and discusses its modulation through calorie restriction, which is directly related to the root causes of aging and age-related diseases. While it provides a solid overview and discusses biochemical evidence, the findings appear to be more of a synthesis of existing knowledge rather than presenting novel experimental data or groundbreaking insights. Thus, it contributes to the field but does not significantly advance it.
Jonathan Myers, Cristina Cadenas-Sanchez, Robert Ross ...
· Cardiorespiratory Fitness
· Division of Cardiology, Veterans Affairs Palo Alto Health Care System, Palo Alto, CA, USA - drj993@aol.com.
· pubmed
Cardiorespiratory fitness (CRF) has been increasingly recognized in recent years as an important predictor of risk for adverse outcomes in numerous chronic conditions. In fact, a growing body of epidemiological and clinical evidence demonstrates that CRF is a potentially stronger...
Cardiorespiratory fitness (CRF) has been increasingly recognized in recent years as an important predictor of risk for adverse outcomes in numerous chronic conditions. In fact, a growing body of epidemiological and clinical evidence demonstrates that CRF is a potentially stronger predictor of mortality than established risk factors such as smoking, hypertension, hyperlipidemia, and type 2 diabetes. Moreover, adding CRF to these traditional risk factors significantly improves the reclassification of risk for adverse outcomes. The utility of CRF now extends far beyond all-cause and cardiovascular mortality to include the prevention and treatment of numerous other chronic conditions; CRF has been demonstrated to have a mitigating influence in as many as 40 such conditions. Herein we discuss the impact of CRF in the prevention of chronic disease in both adults and children. This discussion includes recent data on interactions between CRF and aging, obesity, statin use, incidence of diabetes, and the impact of CRF and physical activity patterns in adolescents including mental health, scholastic achievement, and cardiometabolic health. Finally, we discuss how CRF, as an essential vital sign, can be implemented in clinical practice.
Longevity Relevance Analysis
(4)
The paper discusses the role of cardiorespiratory fitness (CRF) in the prevention of chronic diseases, which is relevant to longevity research as it addresses factors that can influence healthspan and potentially lifespan. However, while it presents solid research on the importance of CRF, the findings are more incremental rather than groundbreaking, focusing on risk factors rather than directly addressing the root causes of aging or lifespan extension. Thus, it has a limited impact on the field.
Su-Kang Shan, Xiao Lin, Feng Wu ...
· Bioactive materials
· National Clinical Research Center for Metabolic Diseases, Department of Metabolism and Endocrinology, The Second Xiangya Hospital of Central South University, Changsha, 410011, Hunan, People's Republic of China.
· pubmed
Vascular calcification and vascular ageing are "silent" diseases but are highly prevalent in patients with end stage renal failure and type 2 diabetes, as well as in the ageing population. Melatonin (MT) has been shown to induce cardiovascular protection effects. However, the rol...
Vascular calcification and vascular ageing are "silent" diseases but are highly prevalent in patients with end stage renal failure and type 2 diabetes, as well as in the ageing population. Melatonin (MT) has been shown to induce cardiovascular protection effects. However, the role of MT on vascular calcification and ageing has not been well-identified. In this study, the aortic transcriptional landscape revealed clues for MT related cell-to-cell communication between endothelial cells (ECs) and vascular smooth muscle cells (VSMCs) in vascular calcification and vascular ageing. Furthermore, we elucidated that it was exosomes that participate in the information transportation from ECs to VSMCs. The exosomes secreted from melatonin-treated ECs (MT-ECs-Exos) inhibited calcification and senescence of VSMCs. Mechanistically, miR-302d-5p was highly enriched in MT-ECs-Exos, while depletion of miR-302d-5p blocked the ability of MT-ECs-Exos to suppress VSMC calcification and senescence. Notably, Wnt3 was a bona fide target of miR-302d-5p and modulated VSMC calcification and senescence. Furthermore, we found that maturation of endothelial derived exosomal miR-302d-5p was promoted by WTAP in an N
Longevity Relevance Analysis
(4)
The paper addresses vascular calcification and ageing, which are significant aspects of the aging process and related diseases. It explores the role of melatonin and exosomal communication in mitigating these issues, suggesting a potential mechanism that could contribute to understanding vascular aging. However, while the findings are interesting and contribute to the field, they do not present a groundbreaking discovery or a comprehensive solution to the root causes of aging, limiting their overall impact.
Amarjith Thiyyar Kandy, Jagdish Chand, Mohammad Zubair Baba ...
· Sirtuin 3
· Department of Pharmaceutical Chemistry, JSS College Of Pharmacy, JSS Academy of Higher Education & Research, Ooty, Nilgiris, Tamilnadu-643001, India.
· pubmed
Aging is a complicated degenerative process that has been thoroughly researched in a variety of taxa, including mammals, worms, yeast, and flies. One important controller of organismal lifetime is the conserved deacetylase protein known as silencing information regulator 2 (SIR2)...
Aging is a complicated degenerative process that has been thoroughly researched in a variety of taxa, including mammals, worms, yeast, and flies. One important controller of organismal lifetime is the conserved deacetylase protein known as silencing information regulator 2 (SIR2). It has been demonstrated that overexpressing SIR2 lengthens the life span in worms, flies, and yeast, demonstrating its function in enhancing longevity. SIRT3 is a member of the sirtuin protein family, identified as a major regulator of longevity and aging. Sirtuin 3 (SIRT3), a possible mitochondrial tumor suppressor, has been explicitly linked to the control of cellular reactive oxygen species (ROS) levels, the Warburg effect, and carcinogenesis. SIRT3 plays a significant part in neurodegenerative illnesses such as Parkinson's and Alzheimer's disease by decreasing the oxidative stress in mitochondria and reducing the ROS levels. Furthermore, SIRT3 has been linked to metabolic and cardiovascular disorders, indicating its wider role in the pathophysiology of disease and possible therapeutic applications.
Longevity Relevance Analysis
(3)
The paper claims that SIRT3 is a significant regulator of longevity and aging, particularly in relation to neurodegenerative diseases. The discussion of SIRT3's role in oxidative stress and its potential therapeutic applications in aging-related diseases provides a connection to the underlying mechanisms of aging.
Guanhao Hong, Yulan Zhou, Shukai Yang ...
· MicroRNAs
· Stem Cell Research and Cellular Therapy Center, Affiliated Hospital of Guangdong Medical University, Zhanjiang, Guangdong 524001, People's Republic of China.
· pubmed
A general decline in the osteogenic differentiation capacity of human bone marrow mesenchymal stem cells (hBMSCs) in the elderly is a clinical consensus, with diverse opinions on the mechanisms. Many studies have demonstrated that metformin (MF) significantly protects against ost...
A general decline in the osteogenic differentiation capacity of human bone marrow mesenchymal stem cells (hBMSCs) in the elderly is a clinical consensus, with diverse opinions on the mechanisms. Many studies have demonstrated that metformin (MF) significantly protects against osteoporosis and reduces fracture risk. However, the exact mechanism of this effect remains unclear. In this study, we found that the decreased miR-181a-5p expression triggered by MF treatment plays a critical role in recovering the osteogenic ability of aging hBMSCs (derived from elderly individuals). Notably, the miR-181a-5p expression in hBMSCs was significantly decreased with prolonged MF (1000 μM) treatment. Further investigation revealed that miR-181a-5p overexpression markedly impairs the osteogenic ability of hBMSCs, while miR-181a-5p inhibition reveals the opposite result. We also found that miR-181a-5p could suppress the protein translation process of plasminogen activator inhibitor-1 (PAI-1), as evidenced by luciferase assays and Western blots. Additionally, low PAI-1 levels were associated with diminished osteogenic ability, whereas high levels promoted it. These findings were further validated in human umbilical cord mesenchymal stem cells (hUCMSCs). Finally, our in vivo experiment with a bone defects rat model confirmed that the agomiR-181a-5p (long-lasting miR-181a-5p mimic) undermined bone defects recovery, while the antagomiR-181a-5p (long-lasting miR-181a-5p inhibitor) significantly promoted the bone defects recovery. In conclusion, we found that MF promotes bone tissue regeneration through the miR-181a-5p/PAI-1 axis by affecting MSC osteogenic ability, providing new strategies for the treatment of age-related bone regeneration disorders.
Longevity Relevance Analysis
(3)
The paper investigates the mechanisms by which metformin can enhance osteogenic differentiation in aging stem cells, addressing a specific aspect of age-related decline in bone regeneration. While it contributes to understanding the role of miR-181a-5p and PAI-1 in this process, the findings are incremental and primarily focused on a specific pathway rather than addressing broader root causes of aging. Thus, while relevant to longevity research, its impact is limited.
Xiangyu Zhang, Hengzhen Li, Lin Chen ...
· Genes & diseases
· Department of Orthopedics, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China.
· pubmed
The NRF2 pathway is a metabolic- and redox-sensitive signaling axis in which the transcription factor controls the expression of a multitude of genes that enable cells to survive environmental stressors, such as oxidative stress, mainly by inducing the expression of cytoprotectiv...
The NRF2 pathway is a metabolic- and redox-sensitive signaling axis in which the transcription factor controls the expression of a multitude of genes that enable cells to survive environmental stressors, such as oxidative stress, mainly by inducing the expression of cytoprotective genes. Basal NRF2 levels are maintained under normal physiological conditions, but when exposed to oxidative stress, cells activate the NRF2 pathway, which is crucial for supporting cell survival. Recently, the NRF2 pathway has been found to have novel functions in metabolic regulation and interplay with other signaling pathways, offering novel insights into the treatment of various diseases. Numerous studies have shown that targeting its pathway can effectively investigate the development and progression of age-related musculoskeletal diseases, such as sarcopenia, osteoporosis, osteoarthritis, and intervertebral disc degeneration. Appropriate regulation of the NRF2 pathway flux holds promise as a means to improve musculoskeletal function, thereby providing a new avenue for drug treatment of age-related musculoskeletal diseases in clinical settings. The review summarized an overview of the relationship between NRF2 and cellular processes such as oxidative stress, apoptosis, inflammation, mitochondrial dysfunction, ferroptosis, and autophagy, and explores the potential of targeted NRF2 regulation in the treatment of age-related musculoskeletal diseases.
Longevity Relevance Analysis
(3)
The paper discusses the NRF2 pathway's role in age-related musculoskeletal diseases, which is relevant to longevity research as it explores potential therapeutic targets that could address underlying mechanisms of aging. However, the focus remains on treating symptoms of specific diseases rather than directly addressing the root causes of aging itself. The findings contribute to the understanding of NRF2 in the context of age-related conditions, but the impact is limited as it does not present groundbreaking insights or transformative approaches to longevity.
Abigail M Benvie, Daniel C Berry
· Receptor, Platelet-Derived Growth Factor beta
· Division of Nutritional Sciences, Cornell University Ithaca, NY 14853, USA.
· pubmed
Platelet Derived Growth Factor Receptor Beta (Pdgfrβ) suppresses the formation of cold temperature-induced beige adipocytes in aged mammals. We aimed to determine if deleting Pdgfrβ in aged mice could rejuvenate metabolically active beige adipocytes by activating group 2 innate l...
Platelet Derived Growth Factor Receptor Beta (Pdgfrβ) suppresses the formation of cold temperature-induced beige adipocytes in aged mammals. We aimed to determine if deleting Pdgfrβ in aged mice could rejuvenate metabolically active beige adipocytes by activating group 2 innate lymphoid cells (ILC2), and whether this effect could counteract diet-induced obesity-associated beige fat decline.
Longevity Relevance Analysis
(4)
The paper investigates the role of Pdgfrβ in the formation of beige adipocytes, which are associated with metabolic health and aging. By focusing on the rejuvenation of these adipocytes in aged mice, the research addresses a potential mechanism related to age-related metabolic decline. However, while the findings are solid and contribute to the understanding of adipocyte biology in the context of aging, the impact is limited as it primarily explores a specific signaling pathway without broader implications for lifespan extension or addressing root causes of aging.
Yuhan Tian, Sihang Shao, Haibo Feng ...
· Atherosclerosis
· College of Pharmacy, Key Laboratory of Research and Application of Ethnic Medicine Processing and Preparation on the Qinghai-Tibet Plateau, Southwest Minzu University, Chengdu 610041, China.
· pubmed
Targeting senescent cells has recently emerged as a promising strategy for treating age-related diseases, such as atherosclerosis, which significantly contributes to global cardiovascular morbidity and mortality. This review elucidates the role of senescent cells in the developme...
Targeting senescent cells has recently emerged as a promising strategy for treating age-related diseases, such as atherosclerosis, which significantly contributes to global cardiovascular morbidity and mortality. This review elucidates the role of senescent cells in the development of atherosclerosis, including persistently damaging DNA, inducing oxidative stress and secreting pro-inflammatory factors known as the senescence-associated secretory phenotype. Therapeutic approaches targeting senescent cells to mitigate atherosclerosis are summarized in this review, which include the development of senotherapeutics and immunotherapies. These therapies are designed to either remove these cells or suppress their deleterious effects. These emerging therapies hold potential to decelerate or even alleviate the progression of AS, paving the way for new avenues in cardiovascular research and treatment.
Longevity Relevance Analysis
(4)
The paper discusses targeting senescent cells, which are implicated in the aging process and age-related diseases like atherosclerosis. By focusing on the underlying mechanisms of cellular senescence and its role in disease progression, the research aligns with longevity research goals. However, while it presents solid insights and therapeutic approaches, it does not introduce groundbreaking findings or novel concepts that would significantly advance the field, thus earning a moderate impact score.
Xin Hua, Dayong Wang
· Caenorhabditis elegans
· Key Laboratory of Environmental Medicine Engineering of Ministry of Education, Medical School, Southeast University, Nanjing, China.
· pubmed
6-PPD quinone (6-PPDQ) exists widely in water environment media, causing acute lethality to some aquatic species. Long-term exposure to 6-PPDQ reduced the lifespan of Caenorhabditis elegans. However, the molecular basis for mitochondrial control of 6-PPDQ toxicity remains largely...
6-PPD quinone (6-PPDQ) exists widely in water environment media, causing acute lethality to some aquatic species. Long-term exposure to 6-PPDQ reduced the lifespan of Caenorhabditis elegans. However, the molecular basis for mitochondrial control of 6-PPDQ toxicity remains largely unclear. Using HSP-6 as marker of mitochondrial unfolded protein response (mt UPR), we observed activation of mt UPR by 0.1 and 1 μg/L 6-PPDQ and inhibition in mt UPR by 10 μg/L 6-PPDQ. Additionally, increased atfs-1, ubl-5, and dve-1 expressions were caused by 0.1 and 1 μg/L 6-PPDQ and decreased expressions of these genes were induced by 10 μg/L 6-PPDQ. Neuronal and intestinal RNA interference (RNAi) of hsp-6 caused susceptibility to 6-PPDQ toxicity on longevity, and atfs-1, ubl-5, and dve-1 acted in neurons and intestine to modulate mt UPR and 6-PPDQ toxicity on longevity. Meanwhile, 6-PPDQ (1 and 10 μg/L) increased expressions of histone methyltransferase genes met-2 and set-6, and decreased expressions of histone demethylase genes jmjd-1.2 and jmjd-3.1. Neuronal RNAi of set-6 and intestinal RNAi of met-2 accelerated hsp-6, atfs-1, ubl-5, and dve-1 expressions and extended lifespan of 6-PPDQ exposed nematodes. In contrast, neuronal RNAi of jmjd-1.2 and jmjd-3.1 and intestinal RNAi of jmjd-1.2 suppressed these 4 gene expressions and reduced lifespan of 6-PPDQ exposed nematodes o. In nematodes, RNAi of hsp-6 could also enhance mitochondrial dysfunction and mitochondrial reactive oxygen species (ROS) induced by 6-PPDQ. Therefore, 6-PPDQ caused damage on longevity was associated with suppression in mt UPR, which was under regulation of certain histone methylation related signals.
Longevity Relevance Analysis
(3)
The paper investigates the effects of 6-PPD quinone on the longevity of C. elegans, focusing on the molecular mechanisms involved in mitochondrial unfolded protein response (mt UPR) and its relation to lifespan. This aligns with longevity research as it explores the underlying biological processes that affect lifespan. However, while the findings contribute to understanding the toxicity of environmental pollutants and their impact on longevity, the study's implications are relatively limited in scope and do not present groundbreaking insights that would significantly advance the field.
Daniel Faria, Marco Lombardi, Nina van der Hoeven ...
· Microcirculation
· Hospital Clínico San Carlos IDISSC, Complutense University of Madrid and CIBERCV, Madrid, Spain.
· pubmed
While it is broadly accepted that ageing is associated with impairment of coronary microvascular function, little is known about the underlying mechanisms.
While it is broadly accepted that ageing is associated with impairment of coronary microvascular function, little is known about the underlying mechanisms.
Longevity Relevance Analysis
(3)
The paper addresses age-related structural changes in the coronary circulation, which is relevant to understanding the mechanisms of aging and how they affect cardiovascular health. However, while it contributes to the knowledge of microvascular function in aging, it does not propose solutions to the root causes of aging or lifespan extension, limiting its overall impact.
Judith Félix, Estefanía Díaz-Del Cerro, Antonio Garrido ...
· Aging, Premature
· Department of Genetics, Physiology and Microbiology (Animal Physiology Unit), Faculty of Biological Sciences, Complutense University of Madrid, Spain; Institute of Investigation Hospital 12 Octubre (imas12), Madrid, Spain. Electronic address: jufelix@ucm.es.
· pubmed
Aging is a heterogeneous process, so individuals of the same age may be aging at a different rate. A natural model of premature aging in mice have been proposed based on the poor response to the T-maze. Those that take longer to cross the intersection are known as Prematurely Agi...
Aging is a heterogeneous process, so individuals of the same age may be aging at a different rate. A natural model of premature aging in mice have been proposed based on the poor response to the T-maze. Those that take longer to cross the intersection are known as Prematurely Aging Mice (PAM), while those that show an exceptional response are known as Exceptional non-PAM (E-NPAM), being the rest non-PAM (NPAM). Although many aspects of PAM and E-NPAM have been described, some aspects of their brain aging have not been studied. Similarly, it is known that PAM, NPAM and E-NPAM show a different rate of aging and longevity, but the differences between these three groups in behavior, immune function and oxidative-inflammatory state are unknown. The present study aims to deepen the study of brain aging in PAM and E-NPAM, and to study the differences in behavior, immunity, and oxidative-inflammatory state of peritoneal leukocytes between PAM, NPAM and E-NPAM. Results show deteriorated brains in PAM. Moreover, NPAM show an oxidative state similar to E-NPAM, an anxiety similar to PAM, and an intermediate immunity and lifespan between PAM and E-NPAM. In conclusion, immune function seems to be more associated with the longevity achieved.
Longevity Relevance Analysis
(3)
The paper investigates differences in aging rates and associated biological factors in a natural mouse model, which is relevant to understanding the mechanisms of aging and longevity. However, the findings appear to be incremental and primarily descriptive, lacking novel insights that could significantly advance the field of longevity research. The focus on behavioral and immune differences among aging groups is interesting but does not address root causes or mechanisms of aging directly, limiting its overall impact.
Guomao Zhu, Buyu Guo, Jinqian Liang
· Osteoporosis
· Department of Orthopedics, Peking Union Medical College Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100730, China.
· pubmed
This study aimed to investigate the association between biological age acceleration and osteoporosis (OP) risk in middle-aged and older adults using data from the National Health and Nutrition Examination Survey (NHANES). The research focused on analyzing the relationship between...
This study aimed to investigate the association between biological age acceleration and osteoporosis (OP) risk in middle-aged and older adults using data from the National Health and Nutrition Examination Survey (NHANES). The research focused on analyzing the relationship between two biological aging metrics, Klemera-Doubal Method Age (KDMAge) and Phenotypic Age (PhenoAge), and OP risk.
Longevity Relevance Analysis
(3)
The paper investigates the association between biological age and osteoporosis risk, which is relevant to understanding age-related diseases. However, it primarily focuses on a specific condition rather than addressing the root causes of aging or lifespan extension. The findings may contribute to the field but do not represent a significant advancement or breakthrough in longevity research.
Jonatan Gustavsson, Zuzana Ištvánfyová, Goran Papenberg ...
· Iron
· Aging Research Center, Karolinska Institutet and Stockholm University, Sweden. Electronic address: jonatan.gustavsson@ki.se.
· pubmed
Iron is necessary for many neurobiological mechanisms, but its overaccumulation can be harmful. Factors triggering age-related brain iron accumulation remain largely unknown and longitudinal data are insufficient. We examined associations between brain iron load and accumulation ...
Iron is necessary for many neurobiological mechanisms, but its overaccumulation can be harmful. Factors triggering age-related brain iron accumulation remain largely unknown and longitudinal data are insufficient. We examined associations between brain iron load and accumulation and, blood markers of iron metabolism, cardiovascular health, lifestyle factors (smoking, alcohol use, physical activity, diet), and ApoE status using longitudinal data from the IronAge study (n = 208, age = 20-79, mean follow-up time = 2.75 years). Iron in cortex and basal ganglia was estimated with magnetic resonance imaging using quantitative susceptibility mapping (QSM). Our results showed that (1) higher peripheral iron levels (i.e., composite score of blood iron markers) were related to greater iron load in the basal ganglia; (2) healthier diet was related to higher iron levels in the cortex and basal ganglia, although for the latter the association was significant only in younger adults (age = 20-39); (3) worsening cardiovascular health was related to increased iron accumulation; (4) younger ApoE ε4 carriers accumulated more iron in basal ganglia than younger non-carriers. Our results demonstrate that modifiable factors, including lifestyle, cardiovascular, and physiological ones, are linked to age-related brain iron content and accumulation, contributing novel information on potential targets for interventions in preventing brain iron-overload.
Longevity Relevance Analysis
(3)
The paper investigates the associations between lifestyle, biological, and genetic factors and brain iron accumulation, which can be linked to neurodegenerative processes associated with aging. While it provides insights into modifiable factors that may influence brain health, the findings are primarily observational and do not directly address root causes of aging or lifespan extension. The contribution is solid but limited in its implications for broader longevity research.