Elissa Silva de Farias Mello, André Luiz Musmanno Branco Oliveira, Thais Dillinger Conway Santanna ...
· Breathing Exercises
· Department of Physiology and Pharmacology, Fluminense Federal University, Rua Prof. Hernani Pires de Melo 101, Niterói, Brazil.
· pubmed
Systematic reviews support the benefits of inspiratory muscle training (IMT) for exercise performance. Recently, many health benefits from IMT have been reported in older adults. Therefore, this work reviewed the literature focusing on IMT effects beyond physical performance in o...
Systematic reviews support the benefits of inspiratory muscle training (IMT) for exercise performance. Recently, many health benefits from IMT have been reported in older adults. Therefore, this work reviewed the literature focusing on IMT effects beyond physical performance in older adults, such as cardiorespiratory, metabolic, and postural balance outcomes. Searches were conducted with the following terms: ("respiratory muscle training" OR "inspiratory muscle training") OR ("inspiratory muscle strength training") AND ("elderly" OR "older" OR "aging" OR "aging"), and using the databases: MEDLINE (PubMed), SCOPUS and EUROPE PMC. Of the 356 articles found, 13 matched the inclusion criteria after screening. Based on reviewed studies, four to eight weeks of IMT (Mostly from 50 % up to 75 % of MIP, 7 days/week) improve cardiac autonomic control at rest and post-exercise, cerebrovascular response to orthostatic stress, static and dynamic balance, blood pressure control, endothelial function, and oxidative stress in older adults. The benefits of IMT in cardiac autonomic and vascular functions are reversed after training cessation. It thus appears that IMT promotes broad physiological gains for the older population. It is necessary to carry out more randomized clinical trials on the subject to confirm the findings of this research.
Longevity Relevance Analysis
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The paper discusses inspiratory muscle training (IMT) and its benefits for older adults, focusing on various physiological improvements. While it addresses health benefits that may contribute to better quality of life in aging, it does not tackle the root causes of aging or lifespan extension directly. The findings are solid but represent an incremental advance in understanding the effects of IMT rather than a transformative breakthrough in longevity research.
Marina M Watowich, Christina E Costa, Kenneth L Chiou ...
· DNA Methylation
· Department of Biology, University of Washington, Seattle, Washington, USA.
· pubmed
Phenotypic aging is ubiquitous across mammalian species, suggesting shared underlying mechanisms of aging. Aging is linked to molecular changes to DNA methylation and gene expression, and environmental factors, such as severe external challenges or adversities, can moderate these...
Phenotypic aging is ubiquitous across mammalian species, suggesting shared underlying mechanisms of aging. Aging is linked to molecular changes to DNA methylation and gene expression, and environmental factors, such as severe external challenges or adversities, can moderate these age-related changes. Yet, it remains unclear whether environmental adversities affect gene regulation via the same molecular pathways as chronological, or 'primary', aging. Investigating molecular aging in naturalistic animal populations can fill this gap by providing insight into shared molecular mechanisms of aging and the effects of a greater diversity of environmental adversities - particularly those that can be challenging to study in humans or laboratory organisms. Here, we characterised molecular aging - specifically, CpG methylation - in a sample of free-ranging rhesus macaques living off the coast of Puerto Rico (n samples = 571, n individuals = 499), which endured a major hurricane during our study. Age was associated with methylation at 78,661 sites (31% of all sites tested). Age-associated hypermethylation occurred more frequently in areas of active gene regulation, while hypomethylation was enriched in regions that show less activity in immune cells, suggesting these regions may become de-repressed in older individuals. Age-associated hypomethylation also co-occurred with increased chromatin accessibility while hypermethylation showed the opposite trend, hinting at a coordinated, multi-level loss of epigenetic stability during aging. We detected 32,048 CpG sites significantly associated with exposure to a hurricane, and these sites overlapped age-associated sites, most strongly in regulatory regions and most weakly in quiescent regions. Together, our results suggest that environmental adversity may contribute to aging-related molecular phenotypes in regions of active gene transcription, but that primary aging has specific signatures in non-regulatory regions.
Longevity Relevance Analysis
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The paper investigates the molecular mechanisms of aging in a nonhuman primate model, focusing on the effects of environmental adversity on gene regulation and epigenetic changes associated with aging. This aligns with longevity research as it explores the underlying biological processes that contribute to aging, rather than merely addressing age-related diseases. However, while the findings are solid and contribute to our understanding of molecular aging, they do not present a major breakthrough or transformative implications for the field, thus warranting a moderate impact score.
Eunseon Gwak, Ji-Won Shin, Sun-Young Kim ...
· Air Pollutants
· Department of Preventive Medicine, Korea University College of Medicine, Seoul, 02841, Republic of Korea.
· pubmed
Our study aimed to investigate the impact of environmental exposures, such as ambient air pollutants, on systemic inflammation and cellular senescence in middle-aged and older women. We utilized epidemiological data linked with exposure data of six air pollutants (particulate mat...
Our study aimed to investigate the impact of environmental exposures, such as ambient air pollutants, on systemic inflammation and cellular senescence in middle-aged and older women. We utilized epidemiological data linked with exposure data of six air pollutants (particulate matters [PM
Longevity Relevance Analysis
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The paper investigates the relationship between ambient air pollution and systemic inflammation, which are factors that can contribute to aging and age-related diseases. However, while it touches on the senescence-associated secretory phenotype, it primarily focuses on environmental exposures rather than addressing the root causes of aging or proposing interventions for lifespan extension. Thus, it represents solid research but with limited impact on the broader field of longevity.
Tongpeng Yue, Yinping Dong, Qidong Huo ...
· Niacinamide
· Tianjin Key Laboratory of Radiation Medicine and Molecular Nuclear Medicine, Institute of Radiation Medicine, Chinese Academy of Medical Science & Peking Union Medical College, Tianjin 300192, China.
· pubmed
The intestine, frequently subjected to pelvic or abdominal radiotherapy, is particularly vulnerable to delayed effects of acute radiation exposure (DEARE) owing to its high radiation sensitivity. Radiation-induced intestinal senescence, a result of DEARE, profoundly affects the w...
The intestine, frequently subjected to pelvic or abdominal radiotherapy, is particularly vulnerable to delayed effects of acute radiation exposure (DEARE) owing to its high radiation sensitivity. Radiation-induced intestinal senescence, a result of DEARE, profoundly affects the well-being and quality of life of radiotherapy patients. However, targeted pharmaceutical interventions for radiation-induced senescence are currently scarce. Our findings showcase that nicotinamide riboside(NR) effectively alleviates radiation-induced intestinal senescence, offering crucial implications for utilizing NR as a pharmacological agent to combat intestinal DEARE.
Longevity Relevance Analysis
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Nicotinamide riboside alleviates radiation-induced intestinal senescence by reducing oxidative damage and regulating intestinal metabolism. The paper is relevant as it explores a potential intervention (nicotinamide riboside) that targets a mechanism (intestinal senescence) associated with aging and its detrimental effects, rather than merely addressing symptoms.
Luca Ferrari, Gianluca Bochicchio, Alberto Bottari ...
· Resistance Training
· University of Verona, Department of Neurosciences, Biomedicine and Movement Sciences, 37131 Verona, Italy; University of Urbino, Department of Biomolecular Sciences, 61029 Urbino, Italy.
· pubmed
Aging is characterized by a physiological decline in physical function, muscle mass, strength, and power. Home-based resistance training interventions have gained increasing attention from scientists and healthcare system operators, but their efficacy is yet to be fully determine...
Aging is characterized by a physiological decline in physical function, muscle mass, strength, and power. Home-based resistance training interventions have gained increasing attention from scientists and healthcare system operators, but their efficacy is yet to be fully determined.
Longevity Relevance Analysis
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The paper addresses the feasibility and effectiveness of home-based resistance exercise in healthy older adults, which is relevant to longevity research as it explores interventions that may help mitigate age-related declines in physical function and muscle mass. However, the study appears to be more of a solid research effort rather than presenting groundbreaking findings, thus limiting its overall impact on the field of longevity.
Lingzhi Wu, Hongchun Lin, Shaomin Li ...
· Macrophages
· Nephrology Division, Department of Medicine, the Third Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.
· pubmed
Renal aging, marked by the accumulation of senescent cells and chronic low-grade inflammation, leads to renal interstitial fibrosis and impaired function. In this study, we investigate the role of macrophages, a key regulator of inflammation, in renal aging by analyzing kidney si...
Renal aging, marked by the accumulation of senescent cells and chronic low-grade inflammation, leads to renal interstitial fibrosis and impaired function. In this study, we investigate the role of macrophages, a key regulator of inflammation, in renal aging by analyzing kidney single-cell RNA sequencing data of C57BL/6J mice from 8 weeks to 24 months. Our findings elucidate the dynamic changes in the proportion of kidney cell types during renal aging and reveal that increased macrophage infiltration contributes to chronic low-grade inflammation, with these macrophages exhibiting senescence and activation of ferroptosis signaling. CellChat analysis indicates enhanced communications between macrophages and tubular cells during aging. Suppressing ferroptosis alleviates macrophage-mediated tubular partial epithelial-mesenchymal transition in vitro, thereby mitigating the expression of fibrosis-related genes. Using SCENIC analysis, we infer Stat1 as a key age-related transcription factor promoting iron dyshomeostasis and ferroptosis in macrophages by regulating the expression of Pcbp1, an iron chaperone protein that inhibits ferroptosis. Furthermore, through virtual screening and molecular docking from a library of anti-aging compounds, we construct a docking model targeting Pcbp1, which indicates that the natural small molecule compound Rutin can suppress macrophage senescence and ferroptosis by preserving Pcbp1. In summary, our study underscores the crucial role of macrophage iron dyshomeostasis and ferroptosis in renal aging. Our results also suggest Pcbp1 as an intervention target in aging-related renal fibrosis and highlight Rutin as a potential therapeutic agent in mitigating age-related renal chronic low-grade inflammation and fibrosis.
Longevity Relevance Analysis
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The paper addresses the role of macrophage iron dyshomeostasis and ferroptosis in renal aging, which are relevant to understanding the underlying mechanisms of aging and age-related diseases. It proposes a potential intervention target (Pcbp1) and a natural compound (Rutin) that may mitigate age-related renal fibrosis, indicating a focus on root causes rather than merely treating symptoms. However, while the findings are solid and contribute to the field, they do not represent a major breakthrough or transformative implications, thus warranting a moderate impact score.
Ajay Kumar Danga, Sukhleen Kour, Anita Kumari ...
· RNA, Long Noncoding
· Molecular Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi, 110067, India.
· pubmed
Long noncoding RNAs (lncRNAs) are important regulatory biomolecules responsible for many cellular processes. The aging of mammals is manifested by a slow and gradual decline of physiological functions after adulthood, progressively resulting in age-related diseases. Testis compri...
Long noncoding RNAs (lncRNAs) are important regulatory biomolecules responsible for many cellular processes. The aging of mammals is manifested by a slow and gradual decline of physiological functions after adulthood, progressively resulting in age-related diseases. Testis comprises different cell-types with defined functions for producing haploid gametes and androgens in males, contributing gene-pool to the next generation with genetic variations to species for evolutionary advantage. The LINC-RBE (long intergenic noncoding-rat brain expressed) RNA showed highest expression in the Leydig cells, responsible for steroidogenesis and production of testosterone; higher expression in primary spermatocytes (pachytene cells), responsible for generation of haploid gametes and high expression in Sertoli cells, the nursing cells of the testes. Testes of immature (4-weeks), adult (16- and 44-weeks), and nearly-old (70-weeks) rats showed low, high, and again low levels of expression, respectively. This along with the nuclear-cytoplasmic localization of LINC-RBE RNA showed age-related expression and function. Thus, expression of LINC-RBE is involved in the molecular physiology of testes, especially Leydig cells, primary spermatocytes, and Sertoli cells. The decline in its expression correlates with diminishing reproductive function of the testes during aging of the rat.
Longevity Relevance Analysis
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The paper investigates the expression of LINC-RBE in testicular cells and its correlation with aging in rats, which is relevant to understanding the biological mechanisms of aging and reproductive decline. However, the findings appear to be incremental and primarily descriptive, lacking novel insights or significant implications for longevity research. Thus, while it contributes to the field, its overall impact is limited.
Sho Tabata, Keita Matsuda, Shou Soeda ...
· Cellular Senescence
· Laboratory for Cell Systems, Institute for Protein Research, Osaka University, Suita, Japan.
· pubmed
Upregulation of nuclear factor κB (NFκB) signaling is a hallmark of aging and a major cause of age-related chronic inflammation. However, its effect on cellular senescence remains unclear. Here, we show that alteration of NFκB nuclear dynamics from oscillatory to sustained by dep...
Upregulation of nuclear factor κB (NFκB) signaling is a hallmark of aging and a major cause of age-related chronic inflammation. However, its effect on cellular senescence remains unclear. Here, we show that alteration of NFκB nuclear dynamics from oscillatory to sustained by depleting a negative feedback regulator of NFκB pathway, NFκB inhibitor alpha (IκBα), in the presence of tumor necrosis factor α (TNFα) promotes cellular senescence. Sustained NFκB activity enhanced inflammatory gene expression through increased NFκB-DNA binding and slowed the cell cycle. IκBα protein was decreased under replicative or oxidative stress in vitro. Furthermore, a decrease in IκBα protein and an increase in DNA-NFκB binding at the transcription start sites of age-associated genes in aged mouse hearts suggested that nuclear NFκB dynamics may play a critical role in the progression of aging. Our study suggests that nuclear NFκB dynamics-dependent epigenetic changes regulated over time in a living system, possibly through a decrease in IκBα, enhance the expression of inflammatory genes to advance the cells to a senescent state.
Longevity Relevance Analysis
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The paper addresses the role of NFκB dynamics in cellular senescence and inflammatory gene expression, which are important aspects of the aging process. By exploring the mechanisms that contribute to cellular senescence and chronic inflammation, the study provides insights into potential root causes of aging. However, while the findings are solid and contribute to the understanding of aging mechanisms, they do not present a major breakthrough or transformative implications for longevity research, thus warranting a moderate impact score.
Chenxiao Li, Mengtian Zhang, Yushan Du ...
· Neural Stem Cells
· Affiliated Hospital of Guangdong Medical University & Key Laboratory of Zebrafish Model for Development and Disease of Guangdong Medical University, Zhanjiang, China.
· pubmed
Blood vessels play a crucial role in maintaining the stem cell niche in both tumours and developing organs. Cell competition is critical for tumour progression. We hypothesise that blood vessels may act as a regulator of this process. As a pioneer, the secretions of blood vessels...
Blood vessels play a crucial role in maintaining the stem cell niche in both tumours and developing organs. Cell competition is critical for tumour progression. We hypothesise that blood vessels may act as a regulator of this process. As a pioneer, the secretions of blood vessels regulate the intensity of cell competition, which is essential for tumour invasion and developmental organ extension. Brd4 expresses highly in endothelial cells within various tumours and is positively correlated with numerous invasive genes, making it an ideal focal point for further research on the relationship between blood vessels and cell competition. Our results indicated that the absence of endothelial Brd4 led to a reduction in neural stem cell mortality and compromised cell competition. Endothelial Brd4 regulated cell competition was dependent on Testican2. Testican2 was capable of depositing Sparc and acted as a suppressor of Sparc. Compromised cell competition resulted in the depletion of neural stem cells and accelerated brain ageing. Testican2 could rescue the run-off of neural stem cells and accelerate the turnover rate of neurons. AD patients show compromised cell competition. Through the cloning of a point mutant of Brd4 identified in a subset of AD patients, it was demonstrated that the mutant lacked the ability to promote cell competition. This study suggests a novel approach for treating age-related diseases by enhancing the intensity of cell competition.
Longevity Relevance Analysis
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The paper explores the relationship between blood vessels, cell competition, and neural stem cell depletion, linking these processes to brain aging and Alzheimer's disease. While it addresses mechanisms that could contribute to age-related decline, it primarily focuses on the role of endothelial cells and specific proteins rather than directly targeting the root causes of aging. The findings may provide insights into potential therapeutic approaches, but the overall contribution to the field of longevity research appears limited and incremental.
David L Hubert, Kenneth R Arnold, Zachary G Greenspan ...
· bioRxiv : the preprint server for biology
· Department of Integrative Biology, Oregon State University.
· pubmed
Experimental evolution studies that feature selection on life-history characters are a proven approach for studying the evolution of aging and variation in rates of senescence. Recently, the incorporation of genomic and transcriptomic approaches into this framework has led to the...
Experimental evolution studies that feature selection on life-history characters are a proven approach for studying the evolution of aging and variation in rates of senescence. Recently, the incorporation of genomic and transcriptomic approaches into this framework has led to the identification of hundreds of genes associated with different aging patterns. However, our understanding of the specific molecular mechanisms underlying these aging patterns remains limited. Here, we incorporated extensive metabolomic profiling into this framework to generate mechanistic insights into aging patterns in
Longevity Relevance Analysis
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The paper investigates the effects of selection for early reproduction on aging and metabolic changes, which aligns with the study of aging mechanisms and life-history evolution. While it contributes to understanding the molecular underpinnings of aging, the findings appear to be solid but not groundbreaking, suggesting a limited impact on the broader field of longevity research.
Bettina Schock, Steven O'Reilly
· Cellular Senescence
· Wellcome-Woolfson Institute for Experimental Medicine, Queens University Belfast 97 Lisburn Road, Belfast, UK.
· pubmed
Senescence is associated with multiple morbidities and therapeutic targeting of these cells is a key aim. In a recent study, Katsuumi et al. found that targeting sodium-glucose co-transporter 2 (SGLT2) promoted immune clearance of senescent cells via programmed cell death-1 ligan...
Senescence is associated with multiple morbidities and therapeutic targeting of these cells is a key aim. In a recent study, Katsuumi et al. found that targeting sodium-glucose co-transporter 2 (SGLT2) promoted immune clearance of senescent cells via programmed cell death-1 ligand (PD-L1) suppression, thus promoting immunosurveillance. This could have profound implications for many age-related diseases, including cancer and frailty.
Longevity Relevance Analysis
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The paper addresses the targeting of senescent cells, which is a key aspect of longevity research as it relates to the underlying mechanisms of aging and age-related diseases. The findings regarding sodium-glucose co-transporter 2 (SGLT2) and its role in promoting immune clearance of senescent cells suggest a potential therapeutic avenue for mitigating the effects of aging. However, while the research presents solid findings, it does not introduce a major breakthrough or transformative approach, thus limiting its overall impact.
Lobke Marie M Mombeek, Werend Boesmans, David M Wilson
· DNA Damage
· Faculty of Medicine and Life Sciences, Biomedical Research Institute, Hasselt University, Diepenbeek, Belgium.
· pubmed
This review discusses the less-explored realm of DNA damage and repair within the enteric nervous system (ENS), often referred to as the "second brain." While the central nervous system has been extensively studied for its DNA repair mechanisms and associated neuropathologies, th...
This review discusses the less-explored realm of DNA damage and repair within the enteric nervous system (ENS), often referred to as the "second brain." While the central nervous system has been extensively studied for its DNA repair mechanisms and associated neuropathologies, the ENS, which can autonomously coordinate gastrointestinal function, experiences unique challenges and vulnerabilities related to its genome integrity. The susceptibility of the ENS to DNA damage is exacerbated by its limited protective barriers, resulting in not only endogenous genotoxic exposures, such as oxidative stress, but also exogenous threats, such as ingested environmental contaminants, local inflammatory responses, and gut dysbiosis. Here, we discuss the evidence for DNA repair defects in enteric neuropathies, most notably, the reported relationship between inherited mutations in RAD21 and LIG3 with chronic intestinal pseudo-obstruction and mitochondrial gastrointestinal encephalomyopathy disorders, respectively. We also introduce the lesser-recognized gastrointestinal complications in DNA repair syndromes, including conditions like Cockayne syndrome. The review concludes by pointing out the potential role of DNA repair defects in not only congenital disorders but also aging-related gut dysfunction, as well as the crucial need for further research to establish direct causal links between DNA damage accumulation and ENS-specific pathologic phenotypes.
Longevity Relevance Analysis
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The paper discusses the role of DNA repair defects in the enteric nervous system and their potential implications for aging-related gut dysfunction. The focus on DNA damage and repair mechanisms in the context of aging and their impact on the enteric nervous system suggests a connection to the root causes of aging.
Zhili Xin, Rongyao Xu, Yangjiele Dong ...
· Autophagy
· Department of Oral and Maxillofacial Surgery, Affiliated Hospital of Stomatology, Nanjing Medical University, Nanjing, China.
· pubmed
Age-related dysfunction of salivary glands (SGs) leading to xerostomia or dry mouth is typically associated with increased dental caries and difficulties in mastication, deglutition or speech. Inflammaging-induced hyposalivation plays a significant role in aged SGs; however, the ...
Age-related dysfunction of salivary glands (SGs) leading to xerostomia or dry mouth is typically associated with increased dental caries and difficulties in mastication, deglutition or speech. Inflammaging-induced hyposalivation plays a significant role in aged SGs; however, the mechanisms by which ageing shapes the inflammatory microenvironment of SGs remain unclear. Here, we show that reduced salivary secretion flow rate in aged human and mice SGs is associated with impaired autophagy and increased M1 polarization of macrophages. Our study reveals the crucial roles of SIRT6 in regulating macrophage autophagy and polarization through the PI3K/AKT/mTOR pathway, as demonstrated by generating two conditional knock out mice. Furthermore, triptolide (TP) effectively rejuvenates macrophage autophagy and polarization via targeting this pathway. We also design a local delivery of TP-loaded apoptotic extracellular vesicles (ApoEVs) to improve age-related SGs dysfunction therapeutically. Collectively, our findings uncover a previously unknown link between SIRT6-regulated autophagy and macrophage polarization in age-mediated hyposalivation, while our locally therapeutic strategy exhibits potential preventive effects for age-related hyposalivation.
Longevity Relevance Analysis
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The paper addresses the mechanisms underlying age-related hyposalivation, specifically focusing on the role of autophagy and macrophage polarization, which are relevant to the aging process. However, while it uncovers a link between these factors and salivary gland dysfunction, the findings primarily contribute to understanding a specific symptom of aging rather than addressing root causes or broader implications for lifespan extension. Thus, the impact is solid but limited.