Pynskhem Bok Swer, Babiangshisha Kharbuli, Donkupar Syiem ...
· DNA Helicases
· Department of Biochemistry, North-Eastern Hill University, Shillong, 793022, India.
· pubmed
BRG1 (Brahma-related gene 1) is a member of the SWI/SNF (switch/sucrose nonfermentable) chromatin remodeling complex which utilizes the energy from ATP hydrolysis for its activity. In addition to its role of regulating the expression of a vast array of genes, BRG1 mediates DNA re...
BRG1 (Brahma-related gene 1) is a member of the SWI/SNF (switch/sucrose nonfermentable) chromatin remodeling complex which utilizes the energy from ATP hydrolysis for its activity. In addition to its role of regulating the expression of a vast array of genes, BRG1 mediates DNA repair upon genotoxic stress and regulates senescence. During organismal ageing, there is accumulation of unrepaired/unrepairable DNA damage due to progressive breakdown of the DNA repair machinery. The present study investigates the expression level of BRG1 as a function of age in the liver of 5- and 21-month-old female mice. It also explores the impact of dietary restriction on BRG1 expression in the old (21-month) mice. Salient findings of the study are: Real-time PCR and Western blot analyses reveal that BRG1 levels are higher in 5-month-old mice but decrease significantly with age. Dietary restriction increases BRG1 expression in the 21-month-old mice, nearly restoring it to the level observed in the younger group. Similar expression patterns are observed for DNA damage response genes ATM (Ataxia Telangiectasia Mutated) and ATR (Ataxia Telangiectasia and Rad3-related) with the advancement in age and which appears to be modulated by dietary restriction. BRG1 transcriptionally regulates ATM as a function of age and dietary restriction. These results suggest that BRG1, ATM and ATR are downregulated as mice age, and dietary restriction can restore their expression. This implies that dietary restriction may play a crucial role in regulating BRG1 and related gene expression, potentially maintaining liver repair and metabolic processes as mice age.
Longevity Relevance Analysis
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The paper investigates the expression of key genes involved in DNA repair and their modulation by dietary restriction in the context of aging, which is directly relevant to understanding mechanisms of aging and potential interventions. However, while the findings contribute to the understanding of gene regulation in aging, they represent a solid but incremental advance rather than a major breakthrough, limiting the overall impact.
Shaojun Wang, Hong Yang
· Heparin, Low-Molecular-Weight
· Department of Gastroenterology, The Affiliated Hospital of Qingdao University, Qingdao, China. wsjayh2006@sohu.com.
· pubmed
The intestinal barrier weakens and chronic gut inflammation occurs in old age, causing age-related illnesses. Recent research shows that low-molecular-weight heparin (LMWH), besides anticoagulation, also has anti-inflammatory and anti-apoptotic effects, protecting the intestinal ...
The intestinal barrier weakens and chronic gut inflammation occurs in old age, causing age-related illnesses. Recent research shows that low-molecular-weight heparin (LMWH), besides anticoagulation, also has anti-inflammatory and anti-apoptotic effects, protecting the intestinal barrier. This study aims to analyze the effect of LMWH on the intestinal barrier of old male rodents. This study assigned Sprague-Dawley male rats to four groups: young (3 months), young + LMWH, old (20 months), and old + LMWH. The LMWH groups received 1 mg/kg LMWH via subcutaneous injection for 7 days. Optical and transmission electron microscopy (TEM) were used to examine morphological changes in intestinal mucosa due to aging. Intestinal permeability was measured using fluorescein isothiocyanate (FITC)-dextran. ELISA kits were used to measure serum levels of IL-6 and IL-1β, while Quantitative RT-PCR detected their mRNA levels in intestinal tissues. Western blotting and immunohistochemistry (IHC) evaluated the tight junction (TJ) protein levels such as occludin, zonula occludens-1 (ZO-1), and claudin-2. Western blotting assessed the expression of the apoptosis marker cleaved caspase 3, while IHC was used to detect LGR5+ intestinal stem cells. The intestinal permeability of aged rats was significantly higher than that of young rats, indicating significant differences. With age, the protein levels of occludin and ZO-1 decreased significantly, while the level of claudin-2 increased significantly. Meanwhile, our study found that the levels of IL-1β and IL-6 increased significantly with age. LMWH intervention effectively alleviated age-related intestinal barrier dysfunction. In aged rats treated with LMWH, the expression of occludin and ZO-1 proteins in the intestine increased, while the expression of claudin-2 decreased. Furthermore, LMWH administration in aged rats resulted in a decrease in IL-1β and IL-6 levels. LMWH also reduced age-related cleaved caspase3 expression, but IHC showed no difference in LGR5+ intestinal stem cells between groups. Research suggests that LMWH could potentially be a favorable therapeutic choice for age-related diseases associated with intestinal barrier dysfunction, by protecting TJ proteins, reducing inflammation, and apoptosis.
Longevity Relevance Analysis
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The paper investigates the effects of low-molecular-weight heparin on intestinal barrier dysfunction in aged rats, which is relevant to understanding age-related physiological decline. However, while it addresses a specific aspect of aging (intestinal barrier integrity), it does not tackle the root causes of aging or propose a broader mechanism for lifespan extension. The findings contribute to the understanding of age-related intestinal issues but represent a solid yet limited advance in the field.
Lauren K Hand, Matthew K Taylor, Debra K Sullivan ...
· Dementia
· Department of Dietetics and Nutrition, School of Health Professions, University of Kansas Medical Center, Kansas City, KS, USA.
· pubmed
Dementia is a debilitating condition with a disproportionate impact on women. While sex differences in longevity contribute to the disparity, the role of the female sex as a biological variable in disease progression is not yet fully elucidated. Metabolic dysfunctions are drivers...
Dementia is a debilitating condition with a disproportionate impact on women. While sex differences in longevity contribute to the disparity, the role of the female sex as a biological variable in disease progression is not yet fully elucidated. Metabolic dysfunctions are drivers of dementia etiology, and cardiometabolic diseases are among the most influential modifiable risk factors. Pregnancy is a time of enhanced vulnerability for metabolic disorders. Many dementia risk factors, such as hypertension or blood glucose dysregulation, often emerge for the first time in pregnancy. While such cardiometabolic complications in pregnancy pose a risk to the health trajectory of a woman, increasing her odds of developing type 2 diabetes or chronic hypertension, it is not fully understood how this relates to her risk for dementia. Furthermore, structural and functional changes in the maternal brain have been reported during pregnancy suggesting it is a time of neuroplasticity for the mother. Therefore, pregnancy may be a window of opportunity to optimize metabolic health and support the maternal brain. Healthy dietary patterns are known to reduce the risk of cardiometabolic diseases and have been linked to dementia prevention, yet interventions targeting cognitive function in late life have largely been unsuccessful. Earlier interventions are needed to address the underlying metabolic dysfunctions and potentially reduce the risk of dementia, and pregnancy offers an ideal opportunity to intervene. This review discusses current evidence regarding maternal brain health and the potential window of opportunity in pregnancy to use diet to address neurological health disparities for women.
Longevity Relevance Analysis
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Pregnancy may serve as a critical period to optimize metabolic health and potentially reduce the risk of dementia in women. The paper addresses the intersection of metabolic health and cognitive decline, focusing on a unique life stage that could influence long-term health outcomes, which is relevant to longevity research.
Diana García-Chávez, Eunice Domínguez-Martín, Laura Kawasaki ...
· Prohibitins
· Departamento de Bioquímica y Biología Estructural, Instituto de Fisiología Celular, Mexico City, México.
· pubmed
The prohibitins Phb1 and Phb2 assemble at the mitochondrial inner membrane to form a multi-dimeric complex. These scaffold proteins are highly conserved in eukaryotic cells, from yeast to mammals, and have been implicated in a variety of mitochondrial functions including aging, p...
The prohibitins Phb1 and Phb2 assemble at the mitochondrial inner membrane to form a multi-dimeric complex. These scaffold proteins are highly conserved in eukaryotic cells, from yeast to mammals, and have been implicated in a variety of mitochondrial functions including aging, proliferation, and degenerative and metabolic diseases. In mammals, PHB2 regulates PINK1-PRKN mediated mitophagy by interacting with lipidated MAP1LC3B/LC3B. Despite their high conservation, prohibitins have not been linked to mitophagy in budding yeasts. In this study, we demonstrate that both Phb1 and Phb2 are required to sustain mitophagy in
Longevity Relevance Analysis
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The paper investigates the role of prohibitins in mitophagy, which is a process linked to mitochondrial function and cellular health, both of which are important in the context of aging and longevity. While the findings contribute to our understanding of mitophagy in yeast, the implications for aging and lifespan extension are still limited, making it a solid but not groundbreaking contribution to the field.
Georgina Gómez Salas, Raquel Arriola Aguirre, Laura Vindas Meza ...
· Diet
· Departamento de Bioquímica, Escuela de Medicina, Universidad de Costa Rica, San José, Costa Rica.
· pubmed
Social relationships, physical activity and diet have been proposed as responsible for longevity; however, many of these conditions have changed in modern societies. The objective of this study was to identify if the anthropometric status, biochemical profile and diet of Nicoyan ...
Social relationships, physical activity and diet have been proposed as responsible for longevity; however, many of these conditions have changed in modern societies. The objective of this study was to identify if the anthropometric status, biochemical profile and diet of Nicoyan centenarians is different from that of their decency and if the quality and diversity of the diet of these Costa Ricans differs from that of adults from urban areas of the same country.
Longevity Relevance Analysis
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The paper investigates dietary diversity and its relationship with the health status of centenarians, which is pertinent to understanding factors that may contribute to longevity. However, while it provides insights into the dietary habits of a specific population, the findings are likely to be context-specific and may not significantly advance the broader field of longevity research. The impact is limited as it does not address fundamental mechanisms of aging or propose interventions for lifespan extension.
Zhaoli Dai, Sue Yi Lee, Srishti Sharma ...
· Diet
· School of Population Health, Faculty of Medicine and Health, University of New South Wales (UNSW Sydney), Sydney, NSW, 2052, Australia. z.daikeller@unsw.edu.au.
· pubmed
Centenarians represent a phenomenon of successful aging. This systematic review aimed to understand lifestyles and health practices, focusing on diet and medication use for healthy longevity in community-based adults 95 years or over. Medline, CINAHL, Scopus, and gray literature ...
Centenarians represent a phenomenon of successful aging. This systematic review aimed to understand lifestyles and health practices, focusing on diet and medication use for healthy longevity in community-based adults 95 years or over. Medline, CINAHL, Scopus, and gray literature were searched from 1 January 2000 to 10 December 2022. Study quality was assessed using the Modified Newcastle-Ottawa Scale (mNOS). Pooled prevalence [%; 95% confidence interval] for categorical variables and pooled mean for continuous variables were estimated for demographics, weight status, lifestyle factors, medications, and health conditions. Of 3392 records screened, 34 studies were included in the review, and 71% (24/34) met the 6/8 criteria in mNOS. Centenarians/near-centenarians' ages ranged from 95 to 118 years, with 75% (71-78%) female and 78% (68-88%) living in rural areas. They had an overall healthy lifestyle: current smoking (7%; 5-9%), drinking (23%; 17-30%), normal weight (52%; 42-61%), overweight (14%; 8-20%), physical activity (23%; 20-26%), and sleep satisfaction (68%; 65-72%). Diet averaged 59.6% carbohydrate, 18.5% protein, and 29.3% fat; over 60% consumed a diverse diet, and < 20% preferred salty food, contributing to lower mortality risks and functional decline. About half used antihypertensives (49%; 14-84%) or other cardiovascular drugs (48%; 24-71%), with an average of 4.6 medications. Common health issues included impaired basic activities of daily living (54%; 33-74%), hypertension (43%; 21-65%), and dementia (41%; 23-59%). The findings of this systemic review underscore the pivotal role of dietary practice and weight management in healthcare strategies to promote healthy ageing. It also recognises rural living styles and sleep hygiene as potential factors contributing to healthy longevity.
Longevity Relevance Analysis
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The paper provides a systematic review of dietary practices and medication use among centenarians, which is relevant to understanding factors that may contribute to healthy aging and longevity. However, while it offers insights into lifestyle factors associated with successful aging, it does not address the underlying biological mechanisms of aging or propose interventions that could significantly alter the aging process itself. Thus, its impact is solid but limited.
Mathania Silva de Almeida Feitosa, Arthur José Pontes Oliveira de Almeida, Sabine Helena Dantas ...
· Erectile Dysfunction
· Departamento de Ciências Farmacêuticas, Centro de Ciências da Saúde, Universidade Federal da Paraíba, João Pessoa, Paraíba, Brazil.
· pubmed
Aging is one of the risk factors involved in the development of erectile dysfunction (ED). Growing evidence suggests that oxidative stress is the critical mediator of changes in endothelial function and penile vascular tone in the aging process. Thus, reducing reactive oxygen spe...
Aging is one of the risk factors involved in the development of erectile dysfunction (ED). Growing evidence suggests that oxidative stress is the critical mediator of changes in endothelial function and penile vascular tone in the aging process. Thus, reducing reactive oxygen species (ROS) levels may preserve the bioactivity of the penile vasculature. Antioxidant compounds, such as carvacrol, limit the damage caused by ROS and, therefore, benefit the treatment of ED. Thus, this study aims to evaluate the effects of carvacrol on ED using the D-( +)-galactose aging model. The animals were divided into five groups: control, D-( +)-galactose 150 mg/kg, carvacrol 50 mg/kg or 100 mg/kg, and sildenafil 1.5 mg/kg treated daily for 8 weeks. The physiological, functional, and morphological characteristics of aging-associated ED were evaluated after treatment with carvacrol. Carvacrol prevented ED in a D-( +)-galactose-induced aging model by reducing hypercontractility, enhancing endothelial dysfunction in the rat corpus cavernosum, and improving endothelial health of rat cavernous endothelial cells. In addition, carvacrol prevented the destruction of erectile components essential for penile erection and promoted a reduction of penile tissue senescence, probably through mechanisms that involve the harmful modulation of oxidative stress. Carvacrol significantly improved the erectile function of rats in a D-( +)-galactose-induced aging model and has excellent potential as a new therapeutic alternative in treating erectile dysfunction.
Longevity Relevance Analysis
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The paper investigates the effects of carvacrol on erectile dysfunction (ED) in an aging model, focusing on oxidative stress and endothelial dysfunction, which are relevant to the aging process. However, it primarily addresses a specific symptom (ED) rather than the root causes of aging or lifespan extension. The findings contribute to the understanding of potential treatments for ED but do not significantly advance the broader field of longevity research. Thus, while it is relevant, its impact is limited.
Joseph B Newton, Stephanie N Weiss, Courtney A Nuss ...
· Biglycan
· Department of Orthopaedic Surgery, McKay Orthopaedic Research Laboratory, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
· pubmed
Small leucine-rich proteoglycans, such as decorin and biglycan, play pivotal roles in collagen fibrillogenesis during development, healing, and aging in tendon. Previous work has shown that the absence of decorin and biglycan affects fibril shape and mechanical properties during ...
Small leucine-rich proteoglycans, such as decorin and biglycan, play pivotal roles in collagen fibrillogenesis during development, healing, and aging in tendon. Previous work has shown that the absence of decorin and biglycan affects fibril shape and mechanical properties during tendon healing. However, the roles of decorin and biglycan in the healing process of aged tendons are unclear. Therefore the objective of this study was to evaluate the differential roles of decorin and biglycan during healing of patellar tendon injury in aged mice. Aged (300 days old) female Dcn
Longevity Relevance Analysis
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The paper investigates the roles of decorin and biglycan in tendon healing in aged mice, which is relevant to understanding the biological processes associated with aging and tissue repair. However, the focus on tendon healing does not directly address the root causes of aging or lifespan extension, making its impact more limited. The findings may contribute to the understanding of age-related changes in tendon properties, but they do not represent a significant advancement in the broader field of longevity research.
Zoltan Ungvari, Setor K Kunutsor
· Coffee
· Vascular Cognitive Impairment, Neurodegeneration and Healthy Brain Aging Program, Department of Neurosurgery, University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.
· pubmed
This review provides a comprehensive synthesis of longitudinal observational and interventional studies on the cardiometabolic effects of coffee consumption. It explores biological mechanisms, and clinical and policy implications, and highlights gaps in the evidence while suggest...
This review provides a comprehensive synthesis of longitudinal observational and interventional studies on the cardiometabolic effects of coffee consumption. It explores biological mechanisms, and clinical and policy implications, and highlights gaps in the evidence while suggesting future research directions. It also reviews evidence on the causal relationships between coffee consumption and cardiometabolic outcomes from Mendelian randomization (MR) studies. Findings indicate that while coffee may cause short-term increases in blood pressure, it does not contribute to long-term hypertension risk. There is limited evidence indicating that coffee intake might reduce the risk of metabolic syndrome and non-alcoholic fatty liver disease. Furthermore, coffee consumption is consistently linked with reduced risks of type 2 diabetes (T2D) and chronic kidney disease (CKD), showing dose-response relationships. The relationship between coffee and cardiovascular disease is complex, showing potential stroke prevention benefits but ambiguous effects on coronary heart disease. Moderate coffee consumption, typically ranging from 1 to 5 cups per day, is linked to a reduced risk of heart failure, while its impact on atrial fibrillation remains inconclusive. Furthermore, coffee consumption is associated with a lower risk of all-cause mortality, following a U-shaped pattern, with the largest risk reduction observed at moderate consumption levels. Except for T2D and CKD, MR studies do not robustly support a causal link between coffee consumption and adverse cardiometabolic outcomes. The potential beneficial effects of coffee on cardiometabolic health are consistent across age, sex, geographical regions, and coffee subtypes and are multi-dimensional, involving antioxidative, anti-inflammatory, lipid-modulating, insulin-sensitizing, and thermogenic effects. Based on its beneficial effects on cardiometabolic health and fundamental biological processes involved in aging, moderate coffee consumption has the potential to contribute to extending the healthspan and increasing longevity. The findings underscore the need for future research to understand the underlying mechanisms and refine health recommendations regarding coffee consumption.
Longevity Relevance Analysis
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The paper discusses the potential beneficial effects of coffee consumption on cardiometabolic health, which can influence healthspan and longevity. However, while it provides a comprehensive review of existing studies, the findings primarily reinforce existing knowledge rather than presenting novel insights or breakthroughs. The impact is solid but limited, as it does not address the root causes of aging directly.
Wenqing Mou, Yixian Cui
· Aging
· Department of Neurosurgery, Medical Research Institute, Frontier Science Center for Immunology and Metabolism, Zhongnan Hospital of Wuhan University, Wuhan University, Wuhan, China.
· pubmed
Reticulophagy, which directs the endoplasmic reticulum (ER) to the phagophore for sequestration within an autophagosome and subsequent lysosomal degradation via specific receptors, is essential for ER quality control and is implicated in various diseases. This study utilizes
Reticulophagy, which directs the endoplasmic reticulum (ER) to the phagophore for sequestration within an autophagosome and subsequent lysosomal degradation via specific receptors, is essential for ER quality control and is implicated in various diseases. This study utilizes
Longevity Relevance Analysis
(4)
The paper addresses reticulophagy and its role in ER quality control, which is relevant to the mechanisms of aging and cellular health. By focusing on enhancing neuronal reticulophagy as a strategy to combat aging and APP toxicity, it touches on potential interventions that could mitigate age-related decline. However, while the findings may contribute to the understanding of aging processes, they appear to be more of a solid research advance rather than a groundbreaking discovery, hence the moderate impact score.
Kah Yong Goh, Wen Xing Lee, Sze Mun Choy ...
· Autophagy
· Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore, Singapore.
· pubmed
The commonality between various muscle diseases is the loss of muscle mass, function, and regeneration, which severely restricts mobility and impairs the quality of life. With muscle stem cells (MuSCs) playing a key role in facilitating muscle repair, targeting regulators of musc...
The commonality between various muscle diseases is the loss of muscle mass, function, and regeneration, which severely restricts mobility and impairs the quality of life. With muscle stem cells (MuSCs) playing a key role in facilitating muscle repair, targeting regulators of muscle regeneration has been shown to be a promising therapeutic approach to repair muscles. However, the underlying molecular mechanisms driving muscle regeneration are complex and poorly understood. Here, we identified a new regulator of muscle regeneration, Deaf1 (Deformed epidermal autoregulatory factor-1) - a transcriptional factor downstream of foxo signaling. We showed that
Longevity Relevance Analysis
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The paper identifies a new regulator of muscle regeneration, which is relevant to longevity research as muscle mass and function are critical for maintaining mobility and quality of life in aging populations. However, while the findings contribute to understanding muscle regeneration mechanisms, they do not directly address the root causes of aging or lifespan extension, limiting their overall impact.
Nathan A Lewis, Scott M Hofer, David A Bennett ...
· Cognitive Dysfunction
· Department of Psychology, University of Victoria, Victoria, BC, Canada.
· pubmed
Having a sense of purpose in life predicts better maintenance of cognitive function in older adulthood and reduced risk of mild cognitive impairment (MCI) and dementia. However, little research has examined its influence on the rate of cognitive decline and length of cognitive he...
Having a sense of purpose in life predicts better maintenance of cognitive function in older adulthood and reduced risk of mild cognitive impairment (MCI) and dementia. However, little research has examined its influence on the rate of cognitive decline and length of cognitive healthspan. This study evaluated the role of sense of purpose on the risk and timing of transitions between normal cognition, MCI, and dementia. Older adults from the Memory and Aging Project (MAP;
Longevity Relevance Analysis
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The paper claims that a sense of purpose in life influences the risk and timing of cognitive decline in older adults. This research is relevant as it explores psychosocial factors that may contribute to cognitive healthspan, which is a critical aspect of longevity and aging.
Jonathan D Schwartzman, Max McCall, Yasmine Ghattas ...
· Tissue Scaffolds
· College of Medicine, University of Central Florida, Orlando, FL, USA.
· pubmed
The repair of large bone defects due to trauma, disease, and infection can be exceptionally challenging in the elderly. Despite best clinical practice, bone regeneration within contemporary, surgically implanted synthetic scaffolds is often problematic, inconsistent, and insuffic...
The repair of large bone defects due to trauma, disease, and infection can be exceptionally challenging in the elderly. Despite best clinical practice, bone regeneration within contemporary, surgically implanted synthetic scaffolds is often problematic, inconsistent, and insufficient where additional osteobiological support is required to restore bone. Emergent smart multifunctional biomaterials may drive important and dynamic cellular crosstalk that directly targets, signals, stimulates, and promotes an innate bone repair response following age-related biological decline and when in the presence of disease or infection. However, their role remains largely undetermined. By highlighting their mechanism/s and mode/s of action, this review spotlights smart technologies that favorably align in their conceivable ability to directly target and enhance bone repair and thus are highly promising for future discovery for use in the elderly. The four degrees of interactive scaffold smartness are presented, with a focus on bioactive, bioresponsive, and the yet-to-be-developed autonomous scaffold activity. Further, cell- and biomolecular-assisted approaches were excluded, allowing for contemporary examination of the capabilities, demands, vision, and future requisites of next-generation biomaterial-induced technologies only. Data strongly supports that smart scaffolds hold significant promise in the promotion of bone repair in patients with a reduced osteobiological response. Importantly, many techniques have yet to be tested in preclinical models of aging. Thus, greater clarity on their proficiency to counteract the many unresolved challenges within the scope of aging bone is highly warranted and is arguably the next frontier in the field. This review demonstrates that the use of multifunctional smart synthetic scaffolds with an engineered strategy to circumvent the biological insufficiencies associated with aging bone is a viable route for achieving next-generation therapeutic success in the elderly population.
Longevity Relevance Analysis
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The paper discusses the development of multifunctional scaffolds aimed at enhancing bone repair in the elderly, addressing a significant challenge related to age-related biological decline. While it presents a solid review of emerging technologies that could potentially improve bone regeneration, the focus remains on the application of these technologies rather than directly addressing the root causes of aging. The impact is rated as solid but limited, as it provides valuable insights into a specific area of biomaterials but does not present groundbreaking findings that would significantly advance the broader field of longevity research.
Alexei Verkhratsky, Robert Zorec
· Cognitive Reserve
· Faculty of Biology, Medicine and Health, The University of Manchester, Manchester, M13 9PT, UK. Alexej.Verkhratsky@manchester.ac.uk.
· pubmed
The concept of cognitive reserve was born to account for the disjunction between the objective extent of brain damage in pathology and its clinical and intellectual outcome. The cognitive reserve comprises structural (brain reserve) and functional (brain maintenance, resilience, ...
The concept of cognitive reserve was born to account for the disjunction between the objective extent of brain damage in pathology and its clinical and intellectual outcome. The cognitive reserve comprises structural (brain reserve) and functional (brain maintenance, resilience, compensation) aspects of the nervous tissue reflecting exposome-driven life-long plasticity, which defines the ability of the brain to withstand aging and pathology. The mechanistic background of this concept was primarily focused on adaptive changes in neurones and neuronal networks. We present arguments favoring the more inclusive view, positing that neuroglia are fundamental for defining the cognitive reserve through homeostatic, neuroprotective, and neurodegenerative mechanisms. Neuroglia are critical for the life-long shaping of synaptically connected neuronal circuits as well as the brain connectome thus defining cognitive reserve. Neuroglial homeostatic and protective physiological responses define brain maintenance and resilience, while neuroglia regenerative capabilities are critical for brain compensation in pathology. Targeting neuroglia may represent an untrodden path for prolonging cognitive longevity.
Longevity Relevance Analysis
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The paper discusses the role of neuroglia in cognitive reserve, which is relevant to understanding brain health and longevity. It explores mechanisms that could contribute to cognitive resilience and maintenance, potentially addressing root causes of cognitive decline associated with aging. However, while the insights are valuable, the paper presents a solid but limited contribution to the field, lacking groundbreaking findings that would significantly advance our understanding of longevity.
Ruhan Wang, Yuxiao Liao, Yan Deng ...
· Caloric Restriction
· Department of Nutrition Hygiene and Toxicology, School of Public Health, Medical College, Wuhan University of Science and Technology, Wuhan, 43000, China.
· pubmed
Time-restricted feeding (TRF) is a lifestyle intervention that aims to maintain a consistent daily cycle of feeding and fasting to support robust circadian rhythms. Recently, it has gained scientific, medical, and public attention due to its potential to enhance body composition,...
Time-restricted feeding (TRF) is a lifestyle intervention that aims to maintain a consistent daily cycle of feeding and fasting to support robust circadian rhythms. Recently, it has gained scientific, medical, and public attention due to its potential to enhance body composition, extend lifespan, and improve overall health, as well as induce autophagy and alleviate symptoms of diseases like cardiovascular diseases, type 2 diabetes, neurodegenerative diseases, cancer, and ischemic injury. However, there is still considerable debate on the primary factors that contribute to the health benefits of TRF. Despite not imposing strict limitations on calorie intake, TRF consistently led to reductions in calorie intake. Therefore, while some studies suggest that the health benefits of TRF are primarily due to caloric restriction (CR), others argue that the key advantages of TRF arise not only from CR but also from factors like the duration of fasting, the timing of the feeding period, and alignment with circadian rhythms. To elucidate the roles and mechanisms of TRF beyond CR, this review incorporates TRF studies that did not use CR, as well as TRF studies with equivalent energy intake to CR, which addresses the previous lack of comprehensive research on TRF without CR and provides a framework for future research directions.
Longevity Relevance Analysis
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Time-restricted feeding (TRF) may enhance health and lifespan through mechanisms beyond caloric restriction. The paper is relevant as it explores the potential of TRF to influence aging processes and improve health outcomes, addressing factors that could contribute to longevity.
Yaqin Li, Congwei Luo, Yating Cai ...
· RNA-Binding Proteins
· Department of General Practice, Zhujiang Hospital, Southern Medical University, Guangzhou, Guangdong, China.
· pubmed
Renal aging and the subsequent rise in kidney-related diseases are attributed to senescence in renal tubular epithelial cells (RTECs). Our study revealed that the abnormal expression of insulin-like growth factor 2 mRNA-binding protein 3 (IGF2BP3), a reader of RNA N6-methyladenos...
Renal aging and the subsequent rise in kidney-related diseases are attributed to senescence in renal tubular epithelial cells (RTECs). Our study revealed that the abnormal expression of insulin-like growth factor 2 mRNA-binding protein 3 (IGF2BP3), a reader of RNA N6-methyladenosine, is critically involved in cisplatin-induced renal tubular senescence. In cisplatin-induced senescence of RTECs, the promoter activity and transcription of IGF2BP3 is markedly suppressed. It was due to the down regulation of MYC proto-oncogene (MYC), which regulates IGF2BP3 transcription by binding to the putative site at 1852-1863 of the IGF2BP3 promoter. Overexpression of IGF2BP3 ameliorated cisplatin-induced renal tubular senescence in vitro. Mechanistic studies revealed that IGF2BP3 inhibits cellular senescence in RTECs by enhancing cyclin-dependent kinase 6 (CDK6) mRNA stability and increasing its expression. The inhibition effect of IGF2BP3 on tubular senescence is partially reversed by the knockdown of CDK6. Further, IGF2BP3 recruits nuclear cap binding protein subunit 1 (NCBP1) and inhibits CDK6 mRNA decay, by recognizing m
Longevity Relevance Analysis
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The paper investigates the role of IGF2BP3 in renal tubular senescence, which is a process related to aging and age-related diseases. It explores a mechanism that could potentially mitigate cellular senescence, thus addressing a root cause of aging at the cellular level. However, while the findings are solid and contribute to understanding the molecular pathways involved in renal aging, the impact is limited as it primarily focuses on a specific cellular mechanism without broader implications for longevity or lifespan extension.
Shuai-Dong Chen, Chen-Yu Chu, Chen-Bing Wang ...
· Extracellular Matrix
· State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases & Department of Oral Implantology, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, Sichuan, China.
· pubmed
Extracellular matrix (ECM) scaffold membranes have exhibited promising potential to better the outcomes of wound healing by creating a regenerative microenvironment around. However, when compared to the application in younger individuals, the performance of the same scaffold memb...
Extracellular matrix (ECM) scaffold membranes have exhibited promising potential to better the outcomes of wound healing by creating a regenerative microenvironment around. However, when compared to the application in younger individuals, the performance of the same scaffold membrane in promoting re-epithelialization and collagen deposition was observed dissatisfying in aged mice. To comprehensively explore the mechanisms underlying this age-related disparity, we conducted the integrated analysis, combing single-cell RNA sequencing (scRNA-Seq) with spatial transcriptomics, and elucidated six functionally and spatially distinctive macrophage groups and lymphocytes surrounding the ECM scaffolds. Through intergroup comparative analysis and cell-cell communication, we characterized the dysfunction of Spp1+ macrophages in aged mice impeded the activation of the type Ⅱ immune response, thus inhibiting the repair ability of epidermal cells and fibroblasts around the ECM scaffolds. These findings contribute to a deeper understanding of biomaterial applications in varied physiological contexts, thereby paving the way for the development of precision-based biomaterials tailored specifically for aged individuals in future therapeutic strategies.
Longevity Relevance Analysis
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The paper investigates the mechanisms of wound healing in aged individuals, focusing on the disparities in host defense related to ECM scaffolds. This research is relevant to longevity as it addresses age-related physiological changes and their implications for therapeutic strategies aimed at improving regenerative processes in older adults. However, while the findings contribute to our understanding of biomaterial applications in aging, the impact is limited as it primarily focuses on a specific aspect of wound healing rather than addressing broader root causes of aging or lifespan extension.
Margaret Banker, Erica C Jansen, Jaclyn M Goodrich ...
· Sleep
· Department of Biostatistics, University of Michigan School of Public Health, Ann Arbor, MI.
· pubmed
Epigenetic aging, a marker of biological aging measured by DNA methylation, may be affected by behaviors, including sleep and physical activity. However, investigations of physical activity and sleep with epigenetic aging among pediatric populations are scant and have not account...
Epigenetic aging, a marker of biological aging measured by DNA methylation, may be affected by behaviors, including sleep and physical activity. However, investigations of physical activity and sleep with epigenetic aging among pediatric populations are scant and have not accounted for correlated behaviors.
Longevity Relevance Analysis
(3)
The paper investigates the associations between sleep, physical activity, and epigenetic age acceleration in adolescents, which touches on biological aging mechanisms. While it contributes to understanding how lifestyle factors may influence epigenetic markers of aging, the focus on a specific demographic (Mexican adolescents) and the correlational nature of the study limits its broader applicability and impact on the field of longevity research.
Zuang Li, Yunyi Liang, Yixuan Wang ...
· Drugs, Chinese Herbal
· Guangzhou University of Chinese Medicine, Guangzhou, 510006, China; Lingnan Medical Research Center of Guangzhou University of Chinese Medicine, Guangzhou, 510006, China. Electronic address: lizuang032@126.com.
· pubmed
Zuogui Pill (ZGP) is a traditional herbal formula of Chinese Medicine with a long history of use in alleviating ovarian aging.
Zuogui Pill (ZGP) is a traditional herbal formula of Chinese Medicine with a long history of use in alleviating ovarian aging.
Longevity Relevance Analysis
(3)
The paper investigates the effects of Zuogui Pills on ovarian aging, specifically focusing on oxidative stress and the restoration of oogonial stem cells. This aligns with longevity research as it addresses mechanisms that could potentially mitigate aspects of aging. However, while the findings may contribute to understanding ovarian aging, the impact appears to be limited and primarily focused on a specific herbal treatment rather than a broader application or significant advancement in the field of longevity research.