Le Shi, Peipei Gao, Yue Zhang ...
· Gastrointestinal Microbiome
· Center for Mitochondrial Biology and Medicine, The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an, Shaanxi, China.
· pubmed
Numerous studies have indicated a close association between gut microbiota dysbiosis, inflammation, and cognitive impairment, highlighting their crucial role in the aging process. 2-(3,4-Dihydroxyphenyl)ethyl 3-hydroxybutanoate (HTHB), a novel derivative of hydroxytyrosol, known ...
Numerous studies have indicated a close association between gut microbiota dysbiosis, inflammation, and cognitive impairment, highlighting their crucial role in the aging process. 2-(3,4-Dihydroxyphenyl)ethyl 3-hydroxybutanoate (HTHB), a novel derivative of hydroxytyrosol, known for its metabolic and anti-inflammatory properties, was investigated for its effects on memory, inflammation, and gut microbiota in senescence-accelerated mouse prone 8 mice. The study employed behavioral testing, biochemical detection, and 16S RNA analysis. Results revealed that HTHB mitigated memory decline and lymphocyte aberrance, reduced inflammation in the brain cortex, intestine and peripheral system, and modulated gut microbiota dysbiosis. Interestingly, the cognitive function and serum inflammation of mice significantly correlated with differences in gut microbiota in senescence-accelerated mouse prone 8 mice. Furthermore, HTHB treatment exhibited an enhancement of gut barrier integrity in colon tissue in SAMP8 mice. In vitro experiments using HCT116 and DLD1 cells further evidenced that HTHB rescued the tight junction protein levels impaired by lipopolysaccharide. These findings demonstrate that HTHB effectively ameliorates cognitive dysfunction in aged mice, by modulating gut microbiota, suppressing inflammation, and promoting intestinal barrier integrity. This highlights the potential of HTHB as a therapeutic agent for age-related cognitive loss.
Longevity Relevance Analysis
(4)
The paper investigates the effects of HTHB on cognitive dysfunction and inflammation in aged mice, focusing on the modulation of gut microbiota, which is increasingly recognized as a factor in aging and age-related diseases. While it presents solid research and contributes to understanding the relationship between gut health and cognitive decline, the findings are somewhat incremental and do not fundamentally address the root causes of aging. Thus, while relevant, its impact is limited.
Francesco Fiorentino, Emanuele Fabbrizi, Antonello Mai ...
· Sirtuins
· Department of Drug Chemistry and Technologies, Sapienza University of Rome, Rome, Italy.
· pubmed
The sirtuin family comprises seven NAD
The sirtuin family comprises seven NAD
Longevity Relevance Analysis
(4)
The paper discusses the activation and inhibition of sirtuins, which are implicated in the regulation of aging and longevity. Sirtuins are known to influence cellular processes related to aging, making this research relevant to understanding and potentially addressing the root causes of aging.
John Sturgis, Rupesh Singh, Quinn R Caron ...
· DNA, Mitochondrial
· Department of Ophthalmic Research, Cole Eye Institute, Cleveland Clinic, Cleveland, Ohio, USA.
· pubmed
Somatic mitochondrial DNA (mtDNA) mutation accumulation has been observed in individuals with retinal degenerative disorders. To study the effects of aging and mtDNA mutation accumulation in the retina, a polymerase gamma (POLG) exonuclease-deficient model, the Polg
Somatic mitochondrial DNA (mtDNA) mutation accumulation has been observed in individuals with retinal degenerative disorders. To study the effects of aging and mtDNA mutation accumulation in the retina, a polymerase gamma (POLG) exonuclease-deficient model, the Polg
Longevity Relevance Analysis
(4)
The paper investigates the accumulation of mitochondrial DNA mutations in the context of aging and retinal degeneration, which is pertinent to understanding the biological mechanisms underlying aging. While it contributes to the field by modeling these processes, the focus appears to be more on the disease aspect rather than directly addressing the root causes of aging or lifespan extension. Thus, it represents solid research but with limited impact on the broader field of longevity.
Ying-Lu Liao, Yi-Fan Fang, Jia-Xing Sun ...
· Diabetic Retinopathy
· Department of Ophthalmology, Eye Institute of Chinese PLA, Xijing Hospital, Fourth Military Medical University, Xi'an, 710032, China.
· pubmed
Diabetic retinopathy (DR) is a diabetic complication that results in visual impairment and relevant retinal diseases. Current therapeutic strategies on DR primarily focus on antiangiogenic therapies, which particularly target vascular endothelial growth factor and its related sig...
Diabetic retinopathy (DR) is a diabetic complication that results in visual impairment and relevant retinal diseases. Current therapeutic strategies on DR primarily focus on antiangiogenic therapies, which particularly target vascular endothelial growth factor and its related signaling transduction. However, these therapies still have limitations due to the intricate pathogenesis of DR. Emerging studies have shown that premature senescence of endothelial cells (ECs) in a hyperglycemic environment is involved in the disease process of DR and plays multiple roles at different stages. Moreover, these surprising discoveries have driven the development of senotherapeutics and strategies targeting senescent endothelial cells (SECs), which present challenging but promising prospects in DR treatment. In this review, we focus on the inducers and mechanisms of EC senescence in the pathogenesis of DR and summarize the current research advances in the development of senotherapeutics and strategies that target SECs for DR treatment. Herein, we highlight the role played by key factors at different stages of EC senescence, which will be critical for facilitating the development of future innovative treatment strategies that target the different stages of senescence in DR.
Longevity Relevance Analysis
(4)
The paper discusses the role of senescent endothelial cells in the pathogenesis of diabetic retinopathy, which is related to aging processes. It explores potential therapeutic strategies targeting these senescent cells, indicating a focus on addressing underlying mechanisms rather than merely treating symptoms. However, while the findings are solid and contribute to the understanding of senescence in the context of an age-related disease, the impact is limited as it primarily reviews existing research rather than presenting novel experimental data or groundbreaking insights.
Jinying Liu, Xiaoli Ma, Wang Guo ...
· Cellular Senescence
· Department of Gastroenterology, Henan Provincial People's Hospital, Henan University People's Hospital, People's Hospital of Zhengzhou University, No. 7 Weiwu Road, Jinshui District, Zhengzhou 450003, China; Microbiome Laboratory, Henan Provincial People's Hospital, Henan University People's Hospital, People's Hospital of Zhengzhou University, No. 7 Weiwu Road, Jinshui District, Zhengzhou 450003, China; Jiaozuo Coal Industry (Group) Co. Ltd. Central Hospital, Jiaozuo 410800, China. Electronic address: ljy216@henu.edu.cn.
· pubmed
Senescence represents a major risk factor promoting liver fibrosis progression. Sirtuin 1 (SIRT1), an essential regulator of cellular senescence, may be involved in developing liver fibrosis. However, the role and mechanism of SIRT1 in liver fibrosis development were largely unkn...
Senescence represents a major risk factor promoting liver fibrosis progression. Sirtuin 1 (SIRT1), an essential regulator of cellular senescence, may be involved in developing liver fibrosis. However, the role and mechanism of SIRT1 in liver fibrosis development were largely unknown. We constructed the liver fibrosis in aged rats induced by carbon tetrachloride (CCl
Longevity Relevance Analysis
(3)
The paper investigates the role of Sirtuin 1 (SIRT1) in liver fibrosis, focusing on mechanisms related to cellular senescence and inflammation, which are relevant to the aging process. However, while it addresses a significant aspect of age-related disease, the findings appear to be more incremental rather than groundbreaking, as they primarily explore the effects of SIRT1 without offering novel insights that could lead to substantial advancements in longevity research.
Ruonan Wang, Xiaojing Yang, Li Wang ...
· Galactose
· College of Pharmacy, Dalian Medical University, Dalian, Liaoning Province, China; The First People's Hospital of Foshan, Foshan, Guangdong province, China.
· pubmed
Aging is an inevitable law of the process of life during which many physiological functions change. Brain aging is an important mechanism in the occurrence and development of degenerative diseases of the central nervous system. β-Hydroxybutyrate (BHBA) is a water-soluble, endogen...
Aging is an inevitable law of the process of life during which many physiological functions change. Brain aging is an important mechanism in the occurrence and development of degenerative diseases of the central nervous system. β-Hydroxybutyrate (BHBA) is a water-soluble, endogenous small-molecule ketone that can cross the blood-brain barrier and induce neuroprotective effects. This study aimed to investigate the effects of BHBA on D-galactose (D-gal) induced aging in mice and its underlying mechanisms using in vitro and in vivo experiments. These results indicated that D-gal-induced senescence, oxidative stress, and inflammatory responses were inhibited by BHBA, and autophagy was promoted by BHBA. Mechanistically, we explored the role of metastasis-associated antigen-1 (MTA1) in D-gal-induced damaged in HT22 cells using small interfering RNA (siRNA). The results demonstrated that the expression of MTA1 was significantly increased by BHBA, which attenuated D-gal-induced aging, oxidative stress, and inflammatory responses, and promoted autophagy through the upregulation of MTA1. In conclusion, MTA1 may be a novel target for treating aging caused by neurological damage. BHBA improves brain aging by activating the MTA1 pathway.
Longevity Relevance Analysis
(3)
The paper investigates the effects of β-Hydroxybutyrate on brain aging and its mechanisms, specifically focusing on the MTA1 pathway, which is relevant to understanding and potentially mitigating aspects of aging. However, while it presents interesting findings, the study primarily addresses a specific mechanism rather than providing a broad solution to the root causes of aging. Thus, it contributes solid research but has limited impact on the overall field of longevity research.
Sebastian J Hofer, Ioanna Daskalaki, Mahmoud Abdellatif, ★ Nektarios Tavernarakis, ★ Guido Kroemer ...
· Autophagy
· Institute of Molecular Biosciences, NAWI Graz, University of Graz, Graz, Austria.
· pubmed
Acute nutrient deprivation (fasting) causes an immediate increase in spermidine biosynthesis in yeast, flies, mice and humans, as corroborated in four independent clinical studies. This fasting-induced surge in spermidine constitutes the critical first step of a phylogenetically ...
Acute nutrient deprivation (fasting) causes an immediate increase in spermidine biosynthesis in yeast, flies, mice and humans, as corroborated in four independent clinical studies. This fasting-induced surge in spermidine constitutes the critical first step of a phylogenetically conserved biochemical cascade that leads to spermidine-dependent hypusination of EIF5A (eukaryotic translation initiation factor 5A), which favors the translation of the pro-macroautophagic/autophagic TFEB (transcription factor EB), and hence an increase in autophagic flux. We observed that genetic or pharmacological inhibition of the spermidine increase by inhibition of ODC1 (ornithine decarboxylase 1) prevents the pro-autophagic and antiaging effects of fasting in yeast, nematodes, flies and mice. Moreover, knockout or knockdown of the enzymes required for EIF5A hypusination abolish fasting-mediated autophagy enhancement and longevity extension in these organisms. Of note, autophagy and longevity induced by rapamycin obey the same rule, meaning that they are tied to an increase in spermidine synthesis. These findings indicate that spermidine is not only a "caloric restriction mimetic" in the sense that its supplementation mimics the beneficial effects of nutrient deprivation on organismal health but that it is also an obligatory downstream effector of the antiaging effects of fasting and rapamycin.
Longevity Relevance Analysis
(5)
The paper presents significant findings regarding the role of spermidine in autophagy and its connection to longevity, particularly in the context of fasting and rapamycin treatment. It explores a biochemical pathway that could be crucial for understanding the mechanisms of aging and lifespan extension. However, while the findings are important, they build on existing knowledge rather than presenting a groundbreaking discovery, which limits the overall impact score.
Eric Chang-Yi Lin, Madison P Davis, Ming-Song Lee ...
· GATA6 Transcription Factor
· Department of Orthopedics and Rehabilitation, University of Wisconsin-Madison, Madison, Wisconsin, USA; Institute of Physiology, College of Medicine, National Yang Ming Chiao Tung University, Taipei City, Taiwan.
· pubmed
The immunomodulatory capacity of mesenchymal stem/stromal cells (MSCs) is a key feature that makes them particularly valuable for regenerative medicine. However, this potential is affected by the chronological aging of the donors and the cell expansion procedures in culture. We h...
The immunomodulatory capacity of mesenchymal stem/stromal cells (MSCs) is a key feature that makes them particularly valuable for regenerative medicine. However, this potential is affected by the chronological aging of the donors and the cell expansion procedures in culture. We have demonstrated that GATA binding protein 6 (GATA6) plays a pivotal role in the aging of MSCs and inhibiting GATA6 rejuvenates the characteristics of MSCs.
Longevity Relevance Analysis
(4)
The paper addresses the aging of mesenchymal stem/stromal cells (MSCs) and explores a pathway (GATA6) that influences their immunomodulatory functions. This is relevant to longevity research as it investigates a mechanism that could potentially rejuvenate MSCs, which are important for regenerative medicine and may have implications for age-related decline. However, while the findings are solid, they appear to be an incremental advance rather than a groundbreaking discovery, limiting their overall impact.
Vasudevarao Penugurti, Rajesh Kumar Manne, Ling Bai ...
· Neoplasms
· Department of Pathology, School of Medicine, Duke University, Durham, NC 27710, United States.
· pubmed
AMP-activated protein kinase (AMPK) is a protein kinase that plays versatile roles in response to a variety of physiological stresses, including glucose deprivation, hypoxia, and ischemia. As a kinase with pleiotropic functions, it plays a complex role in tumor progression, exhib...
AMP-activated protein kinase (AMPK) is a protein kinase that plays versatile roles in response to a variety of physiological stresses, including glucose deprivation, hypoxia, and ischemia. As a kinase with pleiotropic functions, it plays a complex role in tumor progression, exhibiting both tumor-promoting and tumor-suppressing activities. On one hand, AMPK enhances cancer cell proliferation and survival, promotes cancer metastasis, and impairs anti-tumor immunity. On the other hand, AMPK inhibits cancer cell growth and survival and stimulates immune responses in a context-dependent manner. Apart from these functions, AMPK plays a key role in orchestrating aging and aging-related disorders, including cardiovascular diseases (CVD), Osteoarthritis (OA), and Diabetes. In this review article, we summarized the functions of AMPK pathway based on its oncogenic and tumor-suppressive roles and highlighted the importance of AMPK pathway in regulating cellular aging. We also spotlighted the significant role of various signaling pathways, activators, and inhibitors of AMPK in serving as therapeutic strategies for anti-cancer and anti-aging therapy.
Longevity Relevance Analysis
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The paper discusses the role of AMPK in aging and aging-related disorders, which aligns with longevity research. However, while it highlights the dual roles of AMPK in cancer and aging, it primarily focuses on the mechanisms rather than addressing root causes of aging or proposing novel therapeutic strategies that could significantly alter aging processes. Thus, it presents solid research but with limited impact on the field of longevity.
Natan Feter, Tomasz S Ligeza, Neha Bashir ...
· Sedentary Behavior
· Postgraduate Program in Epidemiology, Universidade Federal do Rio Grande do Sul, Porto Alegre, Brazil.
· pubmed
To examine the acute and chronic effects of reducing prolonged sedentary time (ST) with physical activity (PA) on cognitive and brain health.
To examine the acute and chronic effects of reducing prolonged sedentary time (ST) with physical activity (PA) on cognitive and brain health.
Longevity Relevance Analysis
(4)
The paper addresses the effects of reducing sedentary behavior through increased physical activity on cognitive and brain health, which are important factors in aging and longevity. While it contributes solid research to the understanding of lifestyle interventions that may influence cognitive decline, its findings are more incremental rather than groundbreaking, limiting its overall impact on the field of longevity research.
Magda R Hamczyk, Rosa M Nevado, Pilar Gonzalo, ★ Carlos López-Otín ...
· Progeria
· Departamento de Bioquímica y Biología Molecular, Instituto Universitario de Oncología, Universidad de Oviedo, Spain (M.R.H., V.Q., C.L.-O.).
· pubmed
Atherosclerosis is the main medical problem in Hutchinson-Gilford progeria syndrome, a rare premature aging disorder caused by the mutant lamin-A protein progerin. Recently, we found that limiting progerin expression to vascular smooth muscle cells (VSMCs) is sufficient to hasten...
Atherosclerosis is the main medical problem in Hutchinson-Gilford progeria syndrome, a rare premature aging disorder caused by the mutant lamin-A protein progerin. Recently, we found that limiting progerin expression to vascular smooth muscle cells (VSMCs) is sufficient to hasten atherosclerosis and death in
Longevity Relevance Analysis
(4)
The paper addresses the role of endothelial-to-mesenchymal transition in the context of Hutchinson-Gilford progeria syndrome, which is a model for studying accelerated aging and its associated vascular complications. While it contributes to understanding the mechanisms underlying atherosclerosis in a premature aging disorder, the findings primarily focus on a specific disease rather than addressing broader root causes of aging or lifespan extension. Thus, it represents solid research but with limited impact on the overall field of longevity research.
Zhangrong Cheng, Weikang Gan, Qian Xiang ...
· Intervertebral Disc Degeneration
· Department of Orthopedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.
· pubmed
Defects in chaperone-mediated autophagy (CMA) are associated with cellular senescence, but the mechanism remains poorly understood. Here, we found that CMA inhibition induced cellular senescence in a calcium-dependent manner and identified its role in TNF-induced senescence of nu...
Defects in chaperone-mediated autophagy (CMA) are associated with cellular senescence, but the mechanism remains poorly understood. Here, we found that CMA inhibition induced cellular senescence in a calcium-dependent manner and identified its role in TNF-induced senescence of nucleus pulposus cells (NPC) and intervertebral disc degeneration. Based on structural and functional proteomic screens, PLCG1 (phospholipase C gamma 1) was predicted as a potential substrate for CMA deficiency to affect calcium homeostasis. We further confirmed that PLCG1 was a key mediator of CMA in the regulation of intracellular calcium flux. Aberrant accumulation of PLCG1 caused by CMA blockage resulted in calcium overload, thereby inducing NPC senescence. Immunoassays on human specimens showed that reduced LAMP2A, the rate-limiting protein of CMA, or increased PLCG1 was associated with disc senescence, and the TNF-induced disc degeneration in rats was inhibited by overexpression of
Longevity Relevance Analysis
(4)
The paper claims that impaired degradation of PLCG1 by chaperone-mediated autophagy leads to cellular senescence and intervertebral disc degeneration. This research addresses a mechanism related to cellular senescence, which is a key factor in the aging process and age-related degeneration, making it relevant to longevity research.
Suchira Gallage, Elaine E Irvine, Jose Efren Barragan Avila ...
· Inflammation
· Medical Research Council Laboratory of Medical Sciences (LMS), London, UK.
· pubmed
Inhibition of S6 kinase 1 (S6K1) extends lifespan and improves healthspan in mice, but the underlying mechanisms are unclear. Cellular senescence is a stable growth arrest accompanied by an inflammatory senescence-associated secretory phenotype (SASP). Cellular senescence and SAS...
Inhibition of S6 kinase 1 (S6K1) extends lifespan and improves healthspan in mice, but the underlying mechanisms are unclear. Cellular senescence is a stable growth arrest accompanied by an inflammatory senescence-associated secretory phenotype (SASP). Cellular senescence and SASP-mediated chronic inflammation contribute to age-related pathology, but the specific role of S6K1 has not been determined. Here we show that S6K1 deletion does not reduce senescence but ameliorates inflammation in aged mouse livers. Using human and mouse models of senescence, we demonstrate that reduced inflammation is a liver-intrinsic effect associated with S6K deletion. Specifically, we show that S6K1 deletion results in reduced IRF3 activation; impaired production of cytokines, such as IL1β; and reduced immune infiltration. Using either liver-specific or myeloid-specific S6K knockout mice, we also demonstrate that reduced immune infiltration and clearance of senescent cells is a hepatocyte-intrinsic phenomenon. Overall, deletion of S6K reduces inflammation in the liver, suggesting that suppression of the inflammatory SASP by loss of S6K could underlie the beneficial effects of inhibiting this pathway on healthspan and lifespan.
Longevity Relevance Analysis
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The paper investigates the role of S6K1 in regulating inflammation associated with cellular senescence, which is a key factor in the aging process. By demonstrating that S6K1 deletion can ameliorate inflammation in aged mouse livers, the study contributes to understanding the mechanisms underlying aging and healthspan. However, while the findings are solid and provide insights into the inflammatory aspects of aging, they do not represent a major breakthrough or transformative advancement in the field, hence the moderate impact score.
Shuangyi He, Li Yan, Chao Yuan ...
· Myocytes, Cardiac
· Department of Pharmacology, Xiangya School of Pharmaceutical Sciences, Central South University, Changsha, Hunan, 410078, China.
· pubmed
Cardiovascular diseases (CVD) are the leading cause of death worldwide, and advanced age is a main contributor to the prevalence of CVD. Cellular senescence is an irreversible state of cell cycle arrest that occurs in old age or after cells encounter various stresses. Senescent c...
Cardiovascular diseases (CVD) are the leading cause of death worldwide, and advanced age is a main contributor to the prevalence of CVD. Cellular senescence is an irreversible state of cell cycle arrest that occurs in old age or after cells encounter various stresses. Senescent cells not only result in the reduction of cellular function, but also produce senescence-associated secretory phenotype (SASP) to affect surrounding cells and tissue microenvironment. There is increasing evidence that the gradual accumulation of senescent cardiomyocytes is causally involved in the decline of cardiovascular system function. To highlight the role of senescent cardiomyocytes in the pathophysiology of age-related CVD, we first introduced that senescent cardiomyoyctes can be identified by structural changes and several senescence-associated biomarkers. We subsequently provided a comprehensive summary of existing knowledge, outlining the compelling evidence on the relationship between senescent cardiomyocytes and age-related CVD phenotypes. In addition, we discussed that the significant therapeutic potential represented by the prevention of accelerated senescent cardiomyocytes, and the current status of some existing geroprotectors in the prevention and treatment of age-related CVD. Together, the review summarized the role of cardiomyocyte senescence in CVD, and explored the molecular knowledge of senescent cardiomyocytes and their potential clinical significance in developing senescent-based therapies, thereby providing important insights into their biology and potential therapeutic exploration.
Longevity Relevance Analysis
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The paper discusses the role of cardiomyocyte senescence in the pathophysiology of age-related cardiovascular diseases, which is directly related to the mechanisms of aging and cellular senescence. It explores potential therapeutic strategies aimed at addressing the accumulation of senescent cells, which aligns with longevity research focused on mitigating age-related decline. However, while the findings are solid and contribute to the understanding of the relationship between cellular senescence and cardiovascular health, the impact is limited as it primarily summarizes existing knowledge rather than presenting groundbreaking new insights or therapies.
Chunrong Lu, Xiaojun Wang, Pengpeng Ye ...
· Gastrointestinal Microbiome
· AIage Life Science Corporation Ltd., Guangxi Free Trade Zone Aisheng Biotechnology Corporation Ltd., Nanning, Guangxi, China.
· pubmed
Antimicrobial peptides (AMPs) offer a potential solution to the antibiotic crisis owing to their antimicrobial properties, and the human gut biome may be a source of these peptides. However, the potential AMPs and AMP resistance genes (AMPRGs) of gut microbes in different age gro...
Antimicrobial peptides (AMPs) offer a potential solution to the antibiotic crisis owing to their antimicrobial properties, and the human gut biome may be a source of these peptides. However, the potential AMPs and AMP resistance genes (AMPRGs) of gut microbes in different age groups have not been thoroughly assessed. Here, we investigated the potential development of AMPs and the distribution pattern of AMPRGs in the gut microbiome at different ages by analyzing the intestinal metagenomic data of healthy individuals at different life stages (CG: centenarians group n = 20; OAG: older adults group: n = 15; YG: young group: n = 15). Age-related increases were observed in the potential AMPs within the gut microbiome, with centenarians showing a greater diversity of these peptides. However, the gut microbiome of the CG group had a lower level of AMPRGs compared to that of the OAG group, and it was similar to the level found in the YG group. Additionally, conventional probiotic strains showed a significant positive correlation with certain potential AMPs and were associated with a lower detection of resistance genes. Furthermore, comparing potential AMPs with existing libraries revealed limited similarity, indicating that current machine learning models can identify novel peptides in the gut microbiota. These results indicate that longevity may benefit from the diversity of AMPs and lower resistance genes. Our findings help explain the age advantage of the centenarians and identify the potential for antimicrobial peptide biosynthesis in the human gut microbiome, offering insights into the development of antimicrobial peptide resistance and the screening of probiotic strains.
Longevity Relevance Analysis
(3)
The paper investigates the gut microbiome of centenarians and its potential role in producing antimicrobial peptides (AMPs) and resistance genes, which could have implications for longevity. However, while it provides insights into the microbial diversity associated with aging, the findings are more descriptive and do not directly address the root causes of aging or lifespan extension. The contribution is solid but limited in its broader implications for the field of longevity research.
Tai Joon An, Jihye Lim, Heayon Lee ...
· Sarcopenia
· Division of Pulmonology and Critical Care Medicine, Department of Internal Medicine, Yeouido St. Mary's Hospital, College of Medicine, The Catholic University of Korea, Seoul, South Korea.
· pubmed
Breathlessness shares aging mechanisms with frailty and sarcopenia.
Breathlessness shares aging mechanisms with frailty and sarcopenia.
Longevity Relevance Analysis
(3)
The paper addresses the interconnections between breathlessness, frailty, and sarcopenia in older adults, which are important aspects of aging. However, it primarily focuses on the symptoms and manifestations of these conditions rather than addressing the root causes of aging or proposing solutions for lifespan extension. Thus, while it contributes to the understanding of age-related issues, its impact on the field of longevity research is limited.
Abdol-Hossein Rezaeian, Wenyi Wei
· Neoplasms
· Department of Pathology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, United States. Electronic address: arezaeia@bidmc.harvard.edu.
· pubmed
It is well documented that aging is associated with cancer, and likewise, cancer survivors display accelerated aging. As the number of aging individuals and cancer survivors continues to grow, it raises additional concerns across society. Therefore, unraveling the molecular mecha...
It is well documented that aging is associated with cancer, and likewise, cancer survivors display accelerated aging. As the number of aging individuals and cancer survivors continues to grow, it raises additional concerns across society. Therefore, unraveling the molecular mechanisms of aging in tissues is essential to developing effective therapies to fight the aging and cancer diseases in cancer survivors and cancer patients. Indeed, cellular senescence is a critical response, or a natural barrier to suppress the transition of normal cells into cancer cells, however, hypoxia which is physiologically required to maintain the stem cell niche, is increased by aging and inhibits senescence in tissues. Interestingly, oxygen restriction or hypoxia increases longevity and slows the aging process in humans, but hypoxia can also drive angiogenesis to facilitate cancer progression. In addition, cancer treatment is considered as one of the major reasons that drive cellular senescence, subsequently followed by accelerated aging. Several clinical trials have recently evaluated inhibitors to eliminate senescent cells. However, some mechanisms of aging typically can also retard cancer cell growth and progression, which might require careful strategy for better clinical outcomes. Here we describe the molecular regulation of aging and cancer in crosstalk with DNA damage and hypoxia signaling pathways in cancer patients and cancer survivors. We also update several therapeutic strategies that might be critical in reversing the cancer treatment-associated aging process.
Longevity Relevance Analysis
(3)
The paper discusses the molecular mechanisms linking aging and cancer, particularly focusing on cellular senescence and hypoxia. While it touches on important aspects of aging and cancer, it primarily addresses the treatment and management of symptoms rather than targeting the root causes of aging itself. The therapeutic strategies mentioned are relevant but do not significantly advance the understanding of aging mechanisms or lifespan extension. Thus, it represents a solid contribution to the field but with limited impact.
Matthew Gittins, Nada AlMohaisen, Chris Todd ...
· Malnutrition
· School of Health Sciences, University of Manchester, Manchester, UK.
· pubmed
It is well reported that malnutrition in acute care is associated with poorer health outcomes including increased mortality. However, the consequences of malnutrition on survival in community settings is uncertain. Malnutrition in people 65 years or over is often cited. Neverthel...
It is well reported that malnutrition in acute care is associated with poorer health outcomes including increased mortality. However, the consequences of malnutrition on survival in community settings is uncertain. Malnutrition in people 65 years or over is often cited. Nevertheless, this study includes both middle-aged and older adults as current public health policy is highlighting the need to increase disease-free life years and is moving away from just extending life to increase overall longevity. The aim of this study is to describe the association of the risk of malnutrition using the Malnutrition Universal Screening Tool (MUST) with mortality in community-dwelling middle-aged and older adults.
Longevity Relevance Analysis
(3)
The paper addresses the association between malnutrition and mortality in community-dwelling adults over 50, which is relevant to longevity research as it explores factors that can influence health outcomes and lifespan. However, the study primarily focuses on the correlation between malnutrition and mortality rather than addressing the root causes of aging or proposing interventions to extend lifespan. Thus, while it contributes to understanding health in older populations, its impact is limited and more incremental than transformative.
Ruohua Wang, Qiushuang Zhu, He Huang ...
· Drosophila melanogaster
· Department of Nutrition and Food Hygiene, College of Public Health, Key Laboratory of Precision Nutrition and Health, Ministry of Education, Harbin Medical University, Harbin, Heilongjiang, China.
· pubmed
Research has shown that sustained protein restriction can improve the effects of a high-fat diet on health and extend lifespan. However, long-term adherence to a protein-restricted diet is challenging. Therefore, we used a fly model to investigate whether periodic protein restric...
Research has shown that sustained protein restriction can improve the effects of a high-fat diet on health and extend lifespan. However, long-term adherence to a protein-restricted diet is challenging. Therefore, we used a fly model to investigate whether periodic protein restriction (PPR) could also mitigate the potential adverse effects of a high-fat diet and extend healthy lifespan. Our study results showed that PPR reduced body weight, lipid levels, and oxidative stress induced by a high-fat diet in flies and significantly extended the healthy lifespan of male flies. Lipid metabolism and transcriptome results revealed that the common differences between the PPR group and the control group and high-fat group showed a significant decrease in palmitic acid in the PPR group; the enriched common differential pathways Toll and Imd were significantly inhibited in the PPR group. Further analysis indicated a significant positive correlation between palmitic acid levels and gene expression in the Toll and Imd pathways. This suggests that PPR effectively improves fruit fly lipid metabolism, reduces palmitic acid levels, and thereby suppresses the Toll and Imd pathways to extend the healthy lifespan of flies. Our study provides a theoretical basis for the long-term effects of PPR on health and offers a new dietary adjustment option for maintaining health in the long term.
Longevity Relevance Analysis
(3)
The paper investigates the effects of periodic protein restriction on lifespan extension in a model organism, Drosophila melanogaster, which is relevant to longevity research. It explores dietary interventions that could mitigate the adverse effects of high-fat diets, contributing to our understanding of dietary impacts on aging. However, while the findings are interesting, they represent a solid but limited advance in the field, primarily focusing on a specific dietary approach rather than addressing broader mechanisms of aging.
Monika N Todorova, Martina S Savova, Liliya V Mihaylova ...
· Caenorhabditis elegans
· Laboratory of Metabolomics, Institute of Microbiology, Bulgarian Academy of Sciences, 139 Ruski Blvd., Plovdiv 4000, Bulgaria.
· pubmed
Punica granatum L., commonly known as pomegranate, is renowned for its health benefits, primarily associated with the consumption of its fruit and seeds. However, its non-edible parts, including leaves, have been used in traditional medicine as a remedy with anti-inflammatory and...
Punica granatum L., commonly known as pomegranate, is renowned for its health benefits, primarily associated with the consumption of its fruit and seeds. However, its non-edible parts, including leaves, have been used in traditional medicine as a remedy with anti-inflammatory and anti-diabetic properties. Considering the abundance of bioactive compounds, predominantly flavonols, flavones, and tannins P. granatum leaf (PGL) extract holds potential as health-promoting agent. Yet, its effect on longevity and healthspan remains largely unexplored.
Longevity Relevance Analysis
(3)
The paper investigates the effects of Punica granatum L. leaf extract on stress tolerance and longevity in Caenorhabditis elegans, focusing on mechanisms related to aging pathways. While it explores a potentially beneficial natural compound for healthspan and longevity, the findings appear to be preliminary and may not significantly advance the field. The study contributes to understanding the role of bioactive compounds in aging but lacks groundbreaking insights or novel therapeutic approaches.
Cecilia Potente, Julien Bodelet, Hira Himeri ...
· Social Class
· Erasmus School of Health Policy and Management, Erasmus Universiteit Rotterdam, Rotterdam, The Netherlands potente@eshpm.eur.nl.
· pubmed
Socioeconomic status (SES) is associated with many chronic diseases, indicators of senescence and mortality. However, the changing salience of SES in the prediction of adult health is not well understood. Using mRNA-seq abundance data from wave V of the National Longitudinal Stud...
Socioeconomic status (SES) is associated with many chronic diseases, indicators of senescence and mortality. However, the changing salience of SES in the prediction of adult health is not well understood. Using mRNA-seq abundance data from wave V of the National Longitudinal Study of Adolescent to Adult Health (Add Health), we examine the extent to which SES across the early life course is related to gene expression-based signatures for chronic diseases, senescence and inflammation in the late 30s.
Longevity Relevance Analysis
(3)
The paper investigates the relationship between socioeconomic status across the early life course and gene expression signatures related to chronic diseases and senescence. While it touches on factors that may influence aging and health outcomes, it primarily focuses on correlations rather than addressing the root causes of aging or proposing interventions for lifespan extension. The findings may contribute to understanding health disparities but do not significantly advance the field of longevity research.
Saad Ilyas Baig, Maria Naseer, Abdur-Rehman Munir ...
· Aging
· Department of Biotechnology, University of Central Punjab, Lahore, Pakistan. saadbaig959@gmail.com.
· pubmed
The CISD protein family, consisting of CISD1, CISD2, and CISD3, encodes proteins that feature CDGSH iron-sulfur domains crucial for cellular functions and share a common 2Fe-2S domain. CISD2, which is pivotal in cells, regulates intracellular calcium levels, maintains the endopla...
The CISD protein family, consisting of CISD1, CISD2, and CISD3, encodes proteins that feature CDGSH iron-sulfur domains crucial for cellular functions and share a common 2Fe-2S domain. CISD2, which is pivotal in cells, regulates intracellular calcium levels, maintains the endoplasmic reticulum and mitochondrial function, and is associated with longevity and overall health, with exercise stimulating CISD2 production. However, CISD2 expression decreases with age, impacting age-related processes. According to in silico docking, HST is a CISD2 activator that affects metabolic dysfunction and age-related illnesses by affecting metabolic pathways. This study investigated the ability of CISD2 and HST to reduce age-related ailments, with a particular emphasis on liver aging. CISD2 deficiency has a major effect on the function of cells, as it undermines the integrity of the ER, mitochondria, and calcium homeostasis. It also increases susceptibility to oxidative stress and metabolic dysregulation, which is linked to Wolfram syndrome and exacerbates age-related illnesses and metabolic disorders. By shielding cells from stress, CISD2 extends the life of cells and maintains liver health as people age. Its protective effecfts on the liver during aging are further enhanced by its control of translation factors such as Nrf2 and IL-6. This work paves the way for future investigations and clinical applications by examining the structural and functional properties of CISD2 and the interaction between CISD2 and HST. This highlights the therapeutic potential of these findings in promoting healthy livers in humans and battling age-related illnesses.
Longevity Relevance Analysis
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The paper addresses the role of CISD2 in cellular functions related to aging and its potential activation by hesperetin to mitigate age-related liver issues. This focus on a specific protein's role in aging processes and its therapeutic implications for promoting liver health aligns with longevity research. However, while the findings are solid and contribute to the understanding of aging mechanisms, they do not present groundbreaking insights or transformative approaches that would significantly advance the field, hence the moderate impact score.
Runyu Liang, Luwen Zhu, Yongyin Huang ...
· Mitochondria
· Heilongjiang University of Chinese Medicine, Harbin, China.
· pubmed
As one of the most vital organelles within biological cells, mitochondria hold an irreplaceable status and play crucial roles in various diseases. Research and therapies targeting mitochondria have achieved significant progress in numerous conditions. Throughout an organism's lif...
As one of the most vital organelles within biological cells, mitochondria hold an irreplaceable status and play crucial roles in various diseases. Research and therapies targeting mitochondria have achieved significant progress in numerous conditions. Throughout an organism's lifespan, mitochondrial dynamics persist continuously, and due to their inherent characteristics and various external factors, mitochondria are highly susceptible to damage. This susceptibility is particularly evident during aging, where the decline in biological function is closely intertwined with mitochondrial dysfunction. Despite being an ancient and enigmatic organelle, much remains unknown about mitochondria. Here, we will explore the past and present knowledge of mitochondria, providing a comprehensive review of their intrinsic properties and interactions with nuclear DNA, as well as the challenges and impacts they face during the aging process.
Longevity Relevance Analysis
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The paper discusses the fundamental characteristics of mitochondria and their role in aging, which is directly relevant to longevity research. It addresses mitochondrial dysfunction as a key factor in the aging process, suggesting a focus on understanding the root causes of aging rather than merely treating age-related diseases. However, while the review may provide solid insights into mitochondrial dynamics and their implications for aging, it does not present novel findings or significant advancements that would elevate its impact beyond a solid contribution to the field.
Flannery McLamb, Zuying Feng, Jeanne P Vu ...
· Drosophila melanogaster
· Boz Life Science Research and Teaching Institute, La Jolla, CA, USA.
· pubmed
Many species, including fruit flies (Drosophila melanogaster), are sexually dimorphic. Phenotypic variation in morphology, physiology, and behavior can affect development, reproduction, health, and aging. Therefore, designating sex as a variable and sex-blocking should be conside...
Many species, including fruit flies (Drosophila melanogaster), are sexually dimorphic. Phenotypic variation in morphology, physiology, and behavior can affect development, reproduction, health, and aging. Therefore, designating sex as a variable and sex-blocking should be considered when designing experiments. The brain regulates phenotypes throughout the lifespan by balancing survival and reproduction, and sex-specific development at each life stage is likely. Changes in morphology and physiology are governed by differential gene expression, a quantifiable molecular marker for age- and sex-specific variations. We assessed the fruit fly brain transcriptome at three adult ages for gene expression signatures of sex, age, and sex-by-age: 6698 genes were differentially expressed between sexes, with the most divergence at 3 days. Between ages, 31.1% of 6084 differentially expressed genes (1890 genes) share similar expression patterns from 3 to 7 days in females, and from 7 to 14 days in males. Most of these genes (90.5%, 1712) were upregulated and enriched for chemical stimulus detection and/or cilium regulation. Our data highlight an important delay in male brain gene regulation compared to females. Because significant delays in expression could confound comparisons between sexes, studies of sexual dimorphism at phenotypically comparable life stages rather than chronological age should be more biologically relevant.
Longevity Relevance Analysis
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The paper claims that significant delays in male brain gene regulation compared to females could confound comparisons between sexes in studies of sexual dimorphism. This research is relevant as it explores gene expression patterns that may influence aging and longevity, particularly in understanding sex-specific biological processes that could impact health and lifespan.
Audrey R Murchland, Karestan C Koenen, Eleanor Hayes-Larson
· Aging
· Department of Epidemiology, Harvard T.H. Chan School of Public Health, Boston, MA, United States.
· pubmed
Trauma, defined as exposure to actual or threatened death, serious injury, or sexual violence, is a pervasive, major public health challenge that disproportionately burdens socially disadvantaged groups and has known consequences for health outcomes in early and midlife. Despite ...
Trauma, defined as exposure to actual or threatened death, serious injury, or sexual violence, is a pervasive, major public health challenge that disproportionately burdens socially disadvantaged groups and has known consequences for health outcomes in early and midlife. Despite plausible mechanisms by which trauma may also be a critically important risk factor for health outcomes in late life, there is presently a lack of literature evaluating the consequences of trauma on aging-related health outcomes and inequities, such as dementia. In this commentary, we (1) discuss drivers of the paucity of epidemiologic evidence on trauma and health outcomes in late life, namely a lack of available data, supported by detailed review of trauma measures, including interpersonal violence-a particularly common form of trauma-in 7 established longitudinal aging cohort studies in the United States; (2) address 4 common concerns about the inclusion of trauma measures in cohort studies; and (3) suggest ways forward, including specific assessment tools to measure interpersonal violence after a structured review of the PhenX Toolkit, to facilitate critical research to understand the impact of trauma on outcomes in late life.
Longevity Relevance Analysis
(3)
The paper discusses the need for better understanding of how traumatic experiences impact health outcomes in late life. This research is relevant as it addresses a potential root cause of health disparities in aging populations, which is crucial for developing interventions that could improve longevity and quality of life.
Huaming Xi, Wenjing Shan, Minghui Li ...
· Trehalose
· Key Laboratory of Applied Technology on Green-Eco-Healthy Animal Husbandry of Zhejiang Province, Zhejiang Provincial Engineering Laboratory for Animal Health Inspection & Internet Technology, Zhejiang International Science and Technology Cooperation Base for Veterinary Medicine and Health Management, China-Australia Joint Laboratory for Animal Health Big Data Analytics, College of Animal Science and Technology & College of Veterinary Medicine of Zhejiang A&F University, Hangzhou, People's Republic of China.
· pubmed
Reproductive aging can adversely affect male fertility and the health of offspring. The aging process is accompanied by impaired autophagy. Recent studies have shown that Trehalose plays an important role in the prevention of various diseases by regulating autophagy. However, the...
Reproductive aging can adversely affect male fertility and the health of offspring. The aging process is accompanied by impaired autophagy. Recent studies have shown that Trehalose plays an important role in the prevention of various diseases by regulating autophagy. However, the roles of Trehalose in testicular aging and reproductive decline remain to be clarified.
Longevity Relevance Analysis
(3)
Trehalose may improve testicular health by enhancing autophagy and mitochondrial function. The study addresses mechanisms related to reproductive aging, which is a critical aspect of the broader aging process.
Mandi Luo, Dan Yan, Yi Huang ...
· Lumican
· Department of Geriatrics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
· pubmed
Vascular aging, a common pathogenesis of senile chronic diseases, significantly increases morbidity and mortality in older adults; its intricate cellular and molecular mechanisms necessitate further investigation. Lumican (LUM) and integrin α2β1 are profibrotic extracellular matr...
Vascular aging, a common pathogenesis of senile chronic diseases, significantly increases morbidity and mortality in older adults; its intricate cellular and molecular mechanisms necessitate further investigation. Lumican (LUM) and integrin α2β1 are profibrotic extracellular matrix proteins and vital cell regulatory receptors, respectively. However, their roles in vascular aging remain unclear. This study sought to elucidate the connection between LUM and vascular aging as well as the biological mechanism of LUM/integrin α2β1 in this process. Using an enzyme-linked immunosorbent assay, we discovered that plasma LUM was elevated in vascular aging individuals and was positively correlated with brachial-ankle pulse wave velocity. Additionally, immunohistochemical and Western blot analyses confirmed LUM upregulation in arteries of older adults and aged mice, as well as in senescent vascular smooth cells (VSMCs). Wild-type and LUM semiknockout (Lum-/+) mice, along with primary VSMCs extracted from these mice, were exposed to angiotensin II to induce a stress-induced senescence model. LUM semiknockout mitigated angiotensin II-induced arteriosclerosis, hypertension, vascular aging, and remodeling in mice. Both in vitro and in vivo studies revealed that LUM deficiency suppressed p53, p21, collagen 1, and collagen 3 upregulation and synthetic phenotype formation in VSMCs stimulated by angiotensin II. Treating VSMCs with an integrin α2β1 antagonist reversed the aforementioned changes triggered by LUM proteins. Briefly, LUM functions as a potential marker and risk factor for vascular aging and promotes pathological changes by affecting integrin α2β1 in VSMCs. This study introduces a novel molecular target for the early diagnosis and treatment of vascular aging and age-related vascular diseases.
Longevity Relevance Analysis
(4)
The paper investigates the role of Lumican in vascular aging, identifying it as a potential risk factor and biomarker. This focus on the molecular mechanisms underlying vascular aging aligns with longevity research, as it addresses a fundamental aspect of aging and its related pathologies. However, while the findings are solid and contribute to the understanding of vascular aging, they do not represent a major breakthrough or transformative implications for the field, thus warranting a moderate impact score.
Yang Liu, Xiaokang Meng, Changfa Tang ...
· Microglia
· Key Laboratory of Physical Fitness and Exercise Rehabilitation of Hunan Province, College of Physical Education, Hunan Normal University, Changsha 410012, China; Faculty of Physical Education and Health, Huaihua University, China.
· pubmed
Microglia activation-induced neuroinflammation is a risk factor for cognitive dysfunction in the hippocampus during the early stages of neurodegenerative diseases. Exercise is an intrinsic remedy that plays a crucial role in enhancing the survival of neurons and reducing neuroinf...
Microglia activation-induced neuroinflammation is a risk factor for cognitive dysfunction in the hippocampus during the early stages of neurodegenerative diseases. Exercise is an intrinsic remedy that plays a crucial role in enhancing the survival of neurons and reducing neuroinflammation in the brain. Among these theories, alterations in intracellular signaling pathways associated with neuronal growth and inflammation have been emphasized. Based on these observations and recent evidence demonstrating the beneficial effects of exercise on suppressing brain inflammation in the elderly, we examined cellular signaling pathways in the hippocampal formation of D-galactose-induced accelerated aging mice that underwent 8 weeks of treadmill exercise. To accomplish this, we utilized immunohistochemistry and Western blotting to detect the expression of hippocampal proteins, and qPCR to detect the expression of mRNA. We found that aerobic exercise significantly promoted the survival of hippocampal neurons, inhibited microglia activation, and decreased the expression of inflammatory cytokines TNF-α, IL-1α, IL-1β, and chemokines CXCL-1, CXCR-2 in D-galactose model mice. Furthermore, exercise contributed to decreasing the microglia activation marker Iba1-positive cell count and average optical density and increasing the number of NeuN-immunopositive cells. Exercise also reduced RIPK1 and MAP3K5 expression in the hippocampus. Surprisingly, aerobic exercise significantly decreased the expression ratios of p-p65/p65, p-IκBα/IκBα, and p-JNK/JNK. Therefore, we hypothesized that exercise has an anti-inflammatory effect on the hippocampus of mice in the D-galactose-induced aging model. This effect may be attributed to the ability of aerobic exercise to down-regulate the RIPK1-mediated NF-κB and JNK pathways.
Longevity Relevance Analysis
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The paper investigates the effects of aerobic exercise on neuroinflammation and microglial activation in a model of accelerated aging, which is relevant to understanding mechanisms that could mitigate age-related cognitive decline. However, while it presents solid findings regarding the signaling pathways involved, the study primarily focuses on a specific intervention rather than addressing the root causes of aging or lifespan extension in a broader context. Thus, it contributes to the field but with limited impact.
Peter Georgiev, SeongJun Han, Amy Y Huang ...
· CD8-Positive T-Lymphocytes
· Department of Immunology, Blavatnik Institute, Harvard Medical School, Boston, Massachusetts.
· pubmed
Progressive decline of the adaptive immune system with increasing age coincides with a sharp increase in cancer incidence. In this study, we set out to understand whether deficits in antitumor immunity with advanced age promote tumor progression and/or drive resistance to immunot...
Progressive decline of the adaptive immune system with increasing age coincides with a sharp increase in cancer incidence. In this study, we set out to understand whether deficits in antitumor immunity with advanced age promote tumor progression and/or drive resistance to immunotherapy. We found that multiple syngeneic cancers grew more rapidly in aged versus young adult mice, driven by dysfunctional CD8+ T-cell responses. By systematically mapping immune cell profiles within tumors, we identified loss of tumor antigen-specific CD8+ T cells as a primary feature accelerating the growth of tumors in aged mice and driving resistance to immunotherapy. When antigen-specific T cells from young adult mice were administered to aged mice, tumor outgrowth was delayed and the aged animals became sensitive to PD-1 blockade. These studies reveal how age-associated CD8+ T-cell dysfunction may license tumorigenesis in elderly patients and have important implications for the use of aged mice as preclinical models of aging and cancer.
Longevity Relevance Analysis
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The paper investigates the decline of antitumor immunity associated with aging, specifically focusing on CD8+ T-cell dysfunction and its implications for cancer progression and immunotherapy resistance. While it addresses an important aspect of aging and its impact on cancer, it primarily explores the symptoms of aging rather than targeting the root causes of aging itself. The findings contribute solid insights into the relationship between aging and immune response in cancer, but they do not significantly advance the understanding of aging mechanisms or lifespan extension.
Ivanna C Castro-Pascual, Mariana L Ferramola, Fernando G Altamirano ...
· Cerebellum
· Laboratory of Chronobiology, IMIBIO-SL (CONICET-UNSL), Argentina.
· pubmed
Aging is a major risk factor for cognitive deficits, impaired locomotion, and gait disorders. Although oxidative stress and circadian disruption are involved in both normal aging and the pathogenesis of age-associated diseases, just a very few studies explore the consequences of ...
Aging is a major risk factor for cognitive deficits, impaired locomotion, and gait disorders. Although oxidative stress and circadian disruption are involved in both normal aging and the pathogenesis of age-associated diseases, just a very few studies explore the consequences of aging on circadian rhythms in the cerebellum. Here, we investigated age-dependent changes in the circadian organization of the molecular clock, antioxidant defenses and synaptic plasticity-related factors, in the rat cerebellum, and discussed the impact of that altered temporal organization on the cognitive function of this brain area. Particularly, we examined the circadian patterns of Brain and muscle ARNT-like 1 (BMAL1) protein levels, Glutathione peroxidase 4 (GPx4) gene expression, GPx and Catalase (CAT) enzymes activity, reduced glutathione (GSH) levels, and the Brain-derived neurotrophic factor (Bdnf) and its Tyrosine kinase receptor B (TrkB) circadian expression. Endogenously-driven circadian rhythms of BMAL1, GPx4, CAT, GSH, and Bdnf/TrkB factors, were observed in the young rat cerebellum. The rhythms' acrophases show a circadian organization that might be crucial for the daily cerebellar-dependent cognitive functions. Notably, aging disrupted circadian rhythms and the temporal organization of BMAL1, antioxidant defenses, and cognitive Bdnf/TrkB gene expression. Increased oxidative stress and disruption of clock-controlled rhythms during aging, might precede and cause the loss of circadian organization in the aged cerebellum. We expect our results highlight circadian rhythms of the studied factors as new targets for the treatment of age-dependent cerebellar disorders.
Longevity Relevance Analysis
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The paper investigates the disruption of circadian rhythms and its relationship with oxidative stress and cognitive function in the aging cerebellum, which is relevant to understanding the biological mechanisms of aging. However, while it presents solid research, the findings are somewhat incremental and do not propose a direct intervention or solution to the root causes of aging, limiting its overall impact on the field.
Syeda Roohina Ali, Augustine T Nkembo, Srinivas M Tipparaju ...
· Sarcopenia
· Department of Pharmaceutical Sciences, USF Health Taneja College of Pharmacy, University of South Florida, Tampa, FL, US.
· pubmed
Sarcopenia, a disorder marked by muscle loss and dysfunction, is a global health concern, particularly in aging populations. Sarcopenia is intricately related to various health conditions, including obesity, dysphagia, and frailty, which underscores the complexity. Despite recent...
Sarcopenia, a disorder marked by muscle loss and dysfunction, is a global health concern, particularly in aging populations. Sarcopenia is intricately related to various health conditions, including obesity, dysphagia, and frailty, which underscores the complexity. Despite recent advances in metabolomics and other omics data for early detection and treatment, the precise characterization and diagnosis of sarcopenia remains challenging. In the present review we provide an overview of the complex metabolic mechanisms that underlie sarcopenia, with particular emphasis on protein, lipid, carbohydrate, and bone metabolism. The review highlights the importance of leucine and other amino acids in promoting muscle protein synthesis and clarifies the critical role played by amino acid metabolism in preserving muscular health. In addition, the review provides insights regarding lipid metabolism on sarcopenia, with an emphasis on the effects of inflammation and insulin resistance. The development of sarcopenia is largely influenced by insulin resistance, especially with regard to glucose metabolism. Overall, the review emphasizes the complex relationship between bone and muscle health by highlighting the interaction between sarcopenia and bone metabolism. Furthermore, the review outlines various therapeutic approaches and potential biomarkers for diagnosing sarcopenia. These include pharmacological strategies such as hormone replacement therapy and anabolic steroids as well as lifestyle modifications such as exercise, nutrition, and dietary changes.
Longevity Relevance Analysis
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The paper addresses sarcopenia, a condition closely linked to aging and metabolic health, which is relevant to longevity research. It discusses metabolic mechanisms and therapeutic approaches that could potentially mitigate age-related muscle loss, thus contributing to healthier aging. However, while it provides a solid overview of the topic, the findings appear to be more incremental rather than groundbreaking, limiting its overall impact on the field.
Shengyuan Lin, Tao Li, Bin Zhang ...
· Mitophagy
· Department of Orthopaedics, Changsha Hospital of Traditional Chinese Medicine (Changsha Eighth Hospital), Changsha, 410199, China. Electronic address: drlsy9527@163.com.
· pubmed
Intervertebral disc degeneration (IDD) is a common cause of low back pain and disability. Recent studies have highlighted the critical role of mitochondrial dysfunction in the progression of IDD. In this study, we investigated the therapeutic potential of taurine in delaying IDD ...
Intervertebral disc degeneration (IDD) is a common cause of low back pain and disability. Recent studies have highlighted the critical role of mitochondrial dysfunction in the progression of IDD. In this study, we investigated the therapeutic potential of taurine in delaying IDD through the activation of mitophagy via the PINK1/Parkin pathway. Our in vitro and in vivo experiments demonstrate that taurine treatment significantly enhances mitophagy, reduces oxidative stress, delays cell senescence, and promotes the removal of damaged mitochondria in nucleus pulposus cells (NPC). Additionally, taurine-mediated activation of the PINK1/Parkin pathway leads to improved mitochondrial homeostasis and slows the progression of disc degeneration. These findings provide new insights into the protective effects of taurine and highlight its potential as a therapeutic agent for IDD.
Longevity Relevance Analysis
(4)
The paper addresses intervertebral disc degeneration (IDD), which is associated with aging and age-related decline in function. By focusing on the activation of mitophagy and mitochondrial dysfunction, it touches on mechanisms that could be linked to the aging process. However, while the findings are solid and contribute to understanding potential therapeutic approaches, they do not fundamentally address the root causes of aging or lifespan extension, limiting their overall impact.
Xingjie Ma, Dandan Qi, Xiaoming Sun ...
· Keratinocytes
· Laboratory of Intensive Care, Department of Intensive Care, The Affiliated Hospital of Yangzhou University, Yangzhou University, China.
· pubmed
Cellular senescence is described as an irreversible cell cycle arrest for proliferating cells and is associated with the secretion of senescence associated secretory phenotype factors. It has been known to accumulate with age and is regarded as a key driver of aging-associated sk...
Cellular senescence is described as an irreversible cell cycle arrest for proliferating cells and is associated with the secretion of senescence associated secretory phenotype factors. It has been known to accumulate with age and is regarded as a key driver of aging-associated skin pathologies. However, the lack of markers of skin senescence and partially understood skin cellular senescence mechanisms has limited the exploration of skin aging and anti-skin aging strategies. Recently, intracellular calcium signaling has emerged as an important regulator of cellular senescence and aging. However, little is known about the modulation of skin cellular senescence by calcium-associated factors. Here, we found that the expression of calcium channel transient receptor potential melastatin 7 (TRPM7) is elevated during skin keratinocyte senescence and aging. Importantly, TRPM7 promotes skin keratinocyte senescence by triggering intracellular calcium transfer from the endoplasmic reticulum to the mitochondria; accumulation of mitochondrial calcium then induces a drop in mitochondrial membrane potential and reactive oxygen species production, leading to subsequent nuclear enlargement and DNA damage. Altogether, these findings indicate that TRPM7 controls skin keratinocyte senescence through regulating intracellular calcium signaling, and thus, shed light on novel strategies for anti-skin aging therapy.
Longevity Relevance Analysis
(4)
The paper investigates the role of TRPM7 in skin keratinocyte senescence, linking intracellular calcium signaling to cellular aging processes. This focus on a mechanism that contributes to skin aging aligns with longevity research, as it addresses a potential root cause of age-related skin pathologies. However, while the findings are solid and contribute to understanding cellular senescence, they do not present a major breakthrough or transformative implications for the broader field of aging research, thus warranting a moderate impact score.
This study investigates the association between frailty and mortality in Eastern European populations, which remains largely unexplored compared with Western Europe. The aim is to assess the risk of all-cause and cardiovascular mortality associated with varying levels of frailty.
This study investigates the association between frailty and mortality in Eastern European populations, which remains largely unexplored compared with Western Europe. The aim is to assess the risk of all-cause and cardiovascular mortality associated with varying levels of frailty.
Longevity Relevance Analysis
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The study examines the relationship between frailty and mortality, which is pertinent to understanding aging and its associated risks. However, it primarily focuses on observational data rather than addressing the root causes of aging or proposing interventions for lifespan extension. The findings may contribute to the field of gerontology but do not represent a significant advancement or breakthrough in longevity research.
Suet Ting Cheung, Yelim Do, Eunah Kim ...
· Skin Aging
· The Division of Life Science, The Hong Kong University of Science and Technology, Hong Kong, China; The Biotechnology Research Institute, The Hong Kong University of Science and Technology, Hong Kong, China.
· pubmed
Skin aging is a complex biological process affected by a plethora of intrinsic and extrinsic factors that alter cutaneous functions through the modulations of signaling pathways and responses. Expressed in various cell types and skin tissue layers, G protein-coupled receptors (GP...
Skin aging is a complex biological process affected by a plethora of intrinsic and extrinsic factors that alter cutaneous functions through the modulations of signaling pathways and responses. Expressed in various cell types and skin tissue layers, G protein-coupled receptors (GPCRs) play a vital role in regulating skin aging. We have cataloged 156 GPCRs expressed in the skin and reviewed their roles in skin aging, such as pigmentation, loss of elasticity, wrinkles, rough texture, and aging-associated skin disorders. By exploring the GPCRs found in the skin, it may be possible to develop new treatment regimens for aging-associated skin conditions using GPCR ligands.
Longevity Relevance Analysis
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The paper claims that understanding the roles of GPCRs in skin aging could lead to new treatment regimens for aging-associated skin conditions. The focus on GPCRs in the context of skin aging addresses mechanisms that could contribute to the broader understanding of aging processes.
Katlyn C Richardson, Karen Jung, Joanne A Matsubara ...
· Granzymes
· International Collaboration On Repair Discoveries (ICORD) Centre, Department of Pathology and Laboratory Medicine, British Columbia Professional Firefighters' Burn and Wound Healing Laboratory, Vancouver Coastal Health Research Institute, University of British Columbia, Vancouver, BC, Canada.
· pubmed
Aging is a major risk factor for pathologies that manifest later in life. Much attention is devoted towards elucidating how prolonged environmental exposures and inflammation promote biological (accelerated) tissue aging. Granzymes, a family of serine proteases, are increasingly ...
Aging is a major risk factor for pathologies that manifest later in life. Much attention is devoted towards elucidating how prolonged environmental exposures and inflammation promote biological (accelerated) tissue aging. Granzymes, a family of serine proteases, are increasingly recognized for their emerging roles in biological aging and disease. Widely recognized as intracellular mediators of cell death, granzymes, particularly granzyme B (GzmB), also accumulate in the extracellular milieu of tissues with age, contributing to chronic tissue injury, inflammation, and impaired healing. Consequently, this has prompted the field to reconsider how GzmB regulation, accumulation, and proteolysis impact health and disease with age. While GzmB is observed in numerous age-related conditions, the current review focuses on mechanistic studies where proof-of-concept has been forwarded.
Longevity Relevance Analysis
(3)
The paper discusses granzyme B's role in aging and age-related pathologies, focusing on its accumulation and effects on chronic tissue injury and inflammation. While it addresses mechanisms related to aging, it does not propose solutions to the root causes of aging or lifespan extension. The findings contribute to understanding the role of granzymes in aging but represent a solid yet limited impact in the broader context of longevity research.