Jianqun An, Zhanguo Su, Shangjie Meng
· Body Composition
· College of Sports Science, Lingnan Normal University, Zhanjiang 524048, Guangdong, China.
· pubmed
This systematic review and meta-analysis aimed to examine the influence of aerobic training (AT) versus resistance training (RT) on cardiorespiratory fitness and body composition in middle-aged to older adults. Four electronic databases including PubMed, Scopus, Cochrane CENTRAL,...
This systematic review and meta-analysis aimed to examine the influence of aerobic training (AT) versus resistance training (RT) on cardiorespiratory fitness and body composition in middle-aged to older adults. Four electronic databases including PubMed, Scopus, Cochrane CENTRAL, and web of science, as well as reference lists of included randomized controlled trials (RCTs) were searched from inception to April 2024. Data were pooled by the inverse-variance method and reported as mean differences (MDs) with 95 % confidence intervals (CIs). Thirty-eight RCTs, with a pooled sample of 1682 participants, met our inclusion criteria. Meta-analysis revealed that AT significantly improved VO
Longevity Relevance Analysis
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The paper is relevant to longevity research as it investigates the effects of different types of exercise on cardiorespiratory fitness and body composition in middle-aged to older adults, which are important factors in promoting healthy aging and potentially extending lifespan. However, while the findings contribute to our understanding of exercise's role in aging, they represent a solid but incremental advance rather than a groundbreaking discovery.
Borna Rapčan, Manshu Song, Azra Frkatović-Hodžić, ★ Michael P Snyder ...
· Aging
· Genos Ltd, Borongajska Cesta 83H, 10000, Zagreb, Croatia. brapcan@genos.hr.
· pubmed
Ageing is a complex biological process with variations among individuals, leading to the development of ageing clocks to estimate biological age. Glycans, particularly in immunoglobulin G (IgG), have emerged as potential biomarkers of ageing, with changes in glycosylation pattern...
Ageing is a complex biological process with variations among individuals, leading to the development of ageing clocks to estimate biological age. Glycans, particularly in immunoglobulin G (IgG), have emerged as potential biomarkers of ageing, with changes in glycosylation patterns correlating with chronological age.For precision analysis, three different plasma pools were analysed over 26 days in tetraplicates, 312 samples in total. In short-term variability analysis, two cohorts were analysed: AstraZeneca MFO cohort of 26 healthy individuals (median age 20) and a cohort of 70 premenopausal Chinese women (median age 22.5) cohort monitored over 3 months. Long-term variability analysis involved two adult men aged 47 and 57, monitored for 5 and 10 years, respectively. Samples were collected every 3 months and 3 weeks, respectively. IgG N-glycan analysis followed a standardized approach by isolating IgG, its subsequent denaturation and deglycosylation followed by glycan cleanup and labelling. Capillary gel electrophoresis with laser-induced fluorescence (CGE-LIF) and ultra-performance liquid chromatography analyses were employed for glycan profiling. Statistical analysis involved normalization, batch correction, and linear mixed models to assess time effects on derived glycan traits.The intermediate precision results consistently exhibited very low coefficient of variation values across all three test samples. This consistent pattern underscores the high level of precision inherent in the CGE method for analysing the glycan clock of ageing. The AstraZeneca MFO cohort did not show any statistically significant trends, whereas the menstrual cycle cohort exhibited statistically significant trends in digalactosylated (G2), agalactosylated (G0) and fucosylation (F). These trends were attributed to the effects of the menstrual cycle. Long-term stability analysis identified enduring age-related trends in both subjects, showing a positive time effect in G0 and bisected N-acetylglucosamine, as well as a negative time effect in G2 and sialylation, aligning with earlier findings. Time effects measured for monogalactosylation, and F remained substantially lower than ones observed for other traits.The study found that IgG N-glycome analysis using CGE-LIF exhibited remarkably high intermediate precision. Moreover, the study highlights the short- and long-term stability of IgG glycome composition, coupled with a notable capacity to adapt and respond to physiological changes and environmental influences such as hormonal changes, disease, and interventions. The discoveries from this study propel personalized medicine forward by deepening our understanding of how IgG glycome relates to age-related health concerns. This study underscores the reliability of glycans as a biomarker for tracking age-related changes and individual health paths.
Longevity Relevance Analysis
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The paper investigates the glycan clock of ageing, focusing on IgG glycosylation patterns as potential biomarkers of biological age. This aligns with longevity research as it explores biological markers that could help understand and potentially address age-related health concerns. However, while the findings are solid and contribute to the understanding of glycan variability in relation to ageing, they do not present groundbreaking insights or solutions that significantly advance the field of longevity research. Thus, the impact is rated as limited but still valuable.
Takashi Suzuki, Yukako Komaki, Momoka Amano ...
· Cellular Senescence
· Graduate Division of Nutritional and Environmental Sciences, University of Shizuoka, Shizuoka, Japan.
· pubmed
The change of repair efficiency of UV-induced pyrimidine dimers due to aging was examined in replicatively senesced fibroblasts. The fibroblasts with repeated passages showed the characteristics of cellular senescence, including irreversible cell cycle arrest, elevated β-galactos...
The change of repair efficiency of UV-induced pyrimidine dimers due to aging was examined in replicatively senesced fibroblasts. The fibroblasts with repeated passages showed the characteristics of cellular senescence, including irreversible cell cycle arrest, elevated β-galactosidase activity, and senescence-associated secretory phenotype. The incision efficiency of oligonucleotide containing UV lesions was similar regardless of cell doubling levels, but the gap filling process was impaired in replicatively senescent cells. The releases of xeroderma pigmentosum group G, proliferating cell nuclear antigen, and replication protein A from damaged sites were delayed, which might have disturbed the DNA polymerase progression. The persistent single-stranded DNA was likely converted to double-strand breaks, leading to ataxia telangiectasia-mutated phosphorylation and 53BP1 foci formation. Phosphorylated histone H2AX (γ-H2AX) induction mainly occurred in G1 phase in senescent cells, not in S phase such as in normal cells, indicating that replication stress-independent double-strand breaks might be formed. MRE11 having nuclease activity accumulated to damaged sites at early time point after UV irradiation but not released in senescent cells. The pharmacological studies using specific inhibitors for the nuclease activity suggested that MRE11 contributed to the enlargement of single-stranded DNA gap, facilitating the double-strand break formation.
Longevity Relevance Analysis
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The paper investigates the mechanisms of DNA repair in senescent cells, which is directly related to the aging process and the cellular changes that occur with age. While it provides insights into the molecular underpinnings of DNA damage and repair in the context of cellular senescence, the findings are more incremental rather than groundbreaking. The implications for longevity research are present, but the study does not propose solutions to the root causes of aging or significant interventions that could lead to lifespan extension.
Corey J Bolton, Namhee Kim, Lei Yu ...
· Disabled Persons
· Vanderbilt Memory and Alzheimer's Center, Vanderbilt University Medical Center, Nashville, TN, USA.
· pubmed
Longer time horizons are associated with positive health behaviors, but the associations of time horizons with disability and mortality are less understood. This study aims to test the hypothesis that longer time horizons are associated with decreased disability and mortality in ...
Longer time horizons are associated with positive health behaviors, but the associations of time horizons with disability and mortality are less understood. This study aims to test the hypothesis that longer time horizons are associated with decreased disability and mortality in older adults.
Longevity Relevance Analysis
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The paper explores the association between longer time horizons and reduced mortality and disability in older adults, which is relevant to understanding factors that may influence longevity. However, the findings appear to be more observational and correlational rather than addressing root causes of aging or proposing interventions for lifespan extension. Thus, while it contributes to the field, its impact is limited.
Alisa D Kjaergaard, Christina Ellervik, Niels Jessen ...
· The Journal of clinical endocrinology and metabolism
· Steno Diabetes Center Aarhus, Aarhus University Hospital, 8200 Aarhus, Denmark.
· pubmed
Cardiorespiratory fitness, commonly assessed as maximal volume of oxygen consumption (VO2max), has emerged as an important predictor of morbidity and mortality.
Cardiorespiratory fitness, commonly assessed as maximal volume of oxygen consumption (VO2max), has emerged as an important predictor of morbidity and mortality.
Longevity Relevance Analysis
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The paper claims that cardiorespiratory fitness and body composition are linked to longevity through a Mendelian randomization approach. This study is relevant as it explores factors that may influence longevity, addressing potential root causes related to aging rather than merely treating age-related diseases.
Xunrong Zhou, Chunsheng Ben, Dong Wu ...
· MicroRNAs
· Medical College of Nantong University, 9 Qiangyuan Road, Nantong, 226001, China.
· pubmed
Late-onset hypogonadism (LOH) is an age-related syndrome characterized by deficiency of serum testosterone produced by Leydig cells. Previous evidence suggested that microRNA (miR)-361-3p can serve as a promising biomarker for LOH. Nonetheless, its detailed function and molecular...
Late-onset hypogonadism (LOH) is an age-related syndrome characterized by deficiency of serum testosterone produced by Leydig cells. Previous evidence suggested that microRNA (miR)-361-3p can serve as a promising biomarker for LOH. Nonetheless, its detailed function and molecular mechanism in LOH remain unclarified. The 24-month-old male mice were selected as an animal LOH model, and mouse Leydig cell line TM3 was stimulated with H
Longevity Relevance Analysis
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MicroRNA-361-5p alleviates Leydig cell apoptosis and promotes cell growth by targeting PIAS1 in late-onset hypogonadism. The study addresses a mechanism related to Leydig cell function and testosterone production, which are critical factors in age-related hormonal decline.
Lucía Rodríguez-Fernández, Candela Zorzo, Jorge L Arias
· Aging
· Neuroscience Laboratory, Department of Psychology, University of Oviedo, Oviedo, Spain.
· pubmed
Aging is a multifactorial biological process that may be associated with cognitive decline. Photobiomodulation (PBM) is a non-pharmacological therapy that shows promising results in the treatment or prevention of age-related cognitive impairments. The aim of this review is to com...
Aging is a multifactorial biological process that may be associated with cognitive decline. Photobiomodulation (PBM) is a non-pharmacological therapy that shows promising results in the treatment or prevention of age-related cognitive impairments. The aim of this review is to compile the preclinical and clinical evidence of the effect of PBM during aging in healthy and pathological conditions, including behavioral analysis and neuropsychological assessment, as well as brain-related modifications. 37 studies were identified by searching in PubMed, Scopus, and PsycInfo databases. Most studies use wavelengths of 800, 810, or 1064 nm but intensity and days of application were highly variable. In animal studies, it has been shown improvements in spatial memory, episodic-like memory, social memory, while different results have been found in recognition memory. Locomotor activity improved in Parkinson disease models. In healthy aged humans, it has been outlined improvements in working memory, cognitive inhibition, and lexical/semantic access, while general cognition was mainly enhanced on Alzheimer disease or mild cognitive impairment. Anxiety assessment is scarce and shows mixed results. As for brain activity, results outline promising effects of PBM in reversing metabolic alterations and enhancing mitochondrial function, as evidenced by restored CCO activity and ATP levels. Additionally, PBM demonstrated neuroprotective, anti-inflammatory, immunomodulatory and hemodynamic effects. The findings suggest that PBM holds promise as a non-invasive intervention for enhancing cognitive function, and in the modulation of brain functional reorganization. It is necessary to develop standardized protocols for the correct, beneficial, and homogeneous use of PBM.
Longevity Relevance Analysis
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The paper discusses the effects of photobiomodulation (PBM) on cognitive decline associated with aging, which is relevant to longevity research as it explores a non-pharmacological intervention that may enhance cognitive function and potentially address age-related cognitive impairments. However, the findings primarily focus on symptomatic treatment rather than addressing the root causes of aging or lifespan extension. The impact is rated as solid research but limited in its broader implications for the field of longevity.
Tatsuhiko Azegami, Hidehiro Kaneko, Akira Okada ...
· Proteinuria
· Division of Endocrinology, Metabolism and Nephrology, Department of Internal Medicine, Keio University School of Medicine, Tokyo, Japan.
· pubmed
There are limited data on how advancing age influences prediction of cardiovascular disease (CVD) risk based on the estimated glomerular filtration rate (eGFR) and proteinuria, especially in older adults, including those aged ≥85 years old. This study aimed to clarify the associa...
There are limited data on how advancing age influences prediction of cardiovascular disease (CVD) risk based on the estimated glomerular filtration rate (eGFR) and proteinuria, especially in older adults, including those aged ≥85 years old. This study aimed to clarify the association of eGFR and proteinuria with CVD outcomes and the impact of age on this association.
Longevity Relevance Analysis
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The paper investigates the association of eGFR and proteinuria with cardiovascular disease outcomes in individuals aged 85 and older, which is pertinent to understanding health risks in the aging population. However, it primarily focuses on risk factors rather than addressing the root causes of aging or lifespan extension. The findings may contribute to the field of gerontology but do not represent a significant advancement in longevity research. Thus, the impact is rated as solid but limited.
Edward O List, Reetobrata Basu, Darlene E Berryman ...
· Disease Models, Animal
· Edison Biotechnology Institute, Ohio University, Athens, OH 45701, USA.
· pubmed
Mouse models of growth hormone deficiency (GHD) have provided important tools for uncovering the various actions of GH. Nearly 100 years of research using these mouse lines has greatly enhanced our knowledge of the GH/IGF-1 axis. Some of the shared phenotypes of the 5 "common" mo...
Mouse models of growth hormone deficiency (GHD) have provided important tools for uncovering the various actions of GH. Nearly 100 years of research using these mouse lines has greatly enhanced our knowledge of the GH/IGF-1 axis. Some of the shared phenotypes of the 5 "common" mouse models of GHD include reduced body size, delayed sexual maturation, decreased fertility, reduced muscle mass, increased adiposity, and enhanced insulin sensitivity. Since these common mouse lines outlive their normal-sized littermates-and have protection from age-associated disease-they have become important fixtures in the aging field. On the other hand, the 12 "uncommon" mouse models of GHD described herein have tremendously divergent health outcomes ranging from beneficial aging phenotypes (similar to those described for the common models) to extremely detrimental features (such as improper development of the central nervous system, numerous sensory organ defects, and embryonic lethality). Moreover, advancements in next-generation sequencing technologies have led to the identification of an expanding array of genes that are recognized as causative agents to numerous rare syndromes with concomitant GHD. Accordingly, this review provides researchers with a comprehensive up-to-date collection of the common and uncommon mouse models of GHD that have been used to study various aspects of physiology and metabolism associated with multiple forms of GHD. For each mouse line presented, the closest comparable human syndromes are discussed providing important parallels to the clinic.
Longevity Relevance Analysis
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The paper discusses mouse models of growth hormone deficiency (GHD) and their implications for understanding aging and age-related diseases. The common mouse models are noted for their extended lifespan and protection against age-associated diseases, which ties into longevity research. However, the paper primarily reviews existing models rather than presenting novel findings or solutions to aging, limiting its impact to a solid but not groundbreaking contribution.
Fumiaki Obata, Masayuki Miura
· Aging
· Laboratory of Molecular Cell Biology and Development, Graduate School of Biostudies, Kyoto University, Kyoto, Japan.
· pubmed
Life activities are supported by the intricate metabolic network that is fueled by nutrients. Nutritional and genetic studies in model organisms have determined that dietary restriction and certain mutations in the insulin signaling pathway lead to lifespan extension. Subsequentl...
Life activities are supported by the intricate metabolic network that is fueled by nutrients. Nutritional and genetic studies in model organisms have determined that dietary restriction and certain mutations in the insulin signaling pathway lead to lifespan extension. Subsequently, the detailed mechanisms of aging as well as various nutrient signaling pathways and their relationships have been investigated in a wide range of organisms, from yeast to mammals. This review summarizes the roles of nutritional and metabolic signaling in aging and lifespan with a focus on amino acids, the building blocks of organisms. We discuss how lifespan is affected by the sensing, transduction, and metabolism of specific amino acids and consider the influences of life stage, sex, and genetic background on the nutritional control of aging. Our goal is to enhance our understanding of how nutrients affect aging and thus contribute to the biology of aging and lifespan.
Longevity Relevance Analysis
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The paper discusses the regulatory mechanisms of aging through nutritional and metabolic control, specifically focusing on amino acid signaling, which is directly related to the biology of aging and lifespan extension. While it provides a solid overview of the topic and contributes to understanding how nutrients affect aging, the review nature of the paper suggests it may not present groundbreaking findings, thus limiting its overall impact on the field.