Qianhua Yuan, Mengliu Luo, Yutong Xie ...
· Drosophila melanogaster
· Department of Nutrition, School of Public Health, Guangdong Medical University, Dongguan, 523808, China.
· pubmed
Aging entails the progressive decline in the body's self-regulation and functionality over time. Notably, obesity and aging exhibit parallel phenotypes, with obesity further accelerating the aging process across multiple dimensions and diminishing lifespan. In this study, we expl...
Aging entails the progressive decline in the body's self-regulation and functionality over time. Notably, obesity and aging exhibit parallel phenotypes, with obesity further accelerating the aging process across multiple dimensions and diminishing lifespan. In this study, we explored the impact of trans fatty acid (TFA) consumption on the overall health and lifespan of male Drosophila melanogaster under an isocaloric high-sugar and high-fat diet. Our results indicate that TFA intake results in a shortened lifespan, elevated body weight, and increased triglyceride levels in flies fed a high-sugar and high-fat diet with equivalent caloric intake. Additionally, TFA exposure induces oxidative stress, locomotor deficits, and damage to the intestinal barrier in flies. Collectively, chronic TFA consumption expedites the aging process and reduces the lifespan of male Drosophila melanogaster. These results contribute supplementary evidence regarding the adverse health effects associated with TFAs.
Longevity Relevance Analysis
(3)
The paper investigates the effects of trans fatty acid consumption on lifespan and health in Drosophila melanogaster, which is relevant to understanding factors that influence aging and lifespan. However, while the findings contribute to the knowledge of dietary impacts on aging, they represent a solid but incremental advance in the field rather than a significant breakthrough. The use of a model organism and the focus on specific dietary components limits the broader applicability of the results to human aging research.
Atmakur Snigdha, Vijaya Majumdar, N K Manjunath ...
· Healthy Aging
· Division of Life Science, Swami Vivekananda Yoga Anusandhana Samsthana, 560105, Bengaluru, Karnataka, India.
· pubmed
Yoga-based clinical research has shown considerable promise in varied ageing-related health outcomes in older adults. However, robust frameworks have yet to be used in intervention research to endorse yoga as a healthy ageing intervention to test the multidimensional construct of...
Yoga-based clinical research has shown considerable promise in varied ageing-related health outcomes in older adults. However, robust frameworks have yet to be used in intervention research to endorse yoga as a healthy ageing intervention to test the multidimensional construct of healthy ageing. This was an assessor-masked, randomized controlled trial conducted among 258 sedentary, community-dwelling older adults aged 60-80 years, randomly allocated to 26-week yoga-based intervention (YBI) (n = 132) or waitlist control (WLC) (n = 126). The effectiveness of YBI was assessed through two separate global statistical tests, generalized estimating equations and rank sum-based test, against a comprehensive healthy aging panel comprised of ten markers representing the domains of physiological and metabolic, cognitive, physical capability, psychological, and social well-being. The secondary outcomes were individual primary marker scores, Klotho, inflammatory markers, and auxiliary blood markers. We could establish the healthy aging effect of the 26-week YBI over WLC using two models of global statistical test (GEE, β = 0.29; 95% CI = 0.20 to 0.38, p < 0.001), and rank sum-based test (β = 0.28, 95% CI = 0.19 to 0.36, p < 0.001). There were also significant improvements in direction of benefit at individual levels of all the aging markers. Exploratory evaluation with adopted indices from contemporary clinical trials also validated the potential of YBI for healthy aging; HATICE adapted composite score (mean difference = - 0.18; 95% CI = - 0.26 to - 0.09, p < 0.001) and healthy ageing index (mean difference = - 0.33; 95% CI = - 0.63 to - 0.02, p = 0.03). The global effect of YBI across multiple ageing-related outcomes provides a proof of concept for further large-scale validation. The findings hold a great translational value given the accelerated pace of population aging across the globe. Trial registration: CTRI/2021/02/031373.
Longevity Relevance Analysis
(3)
The paper investigates a yoga-based intervention aimed at promoting healthy aging in older adults, which aligns with longevity research by addressing factors that contribute to healthy aging. However, while the findings are promising, they primarily focus on lifestyle interventions rather than addressing the root causes of aging or lifespan extension. The impact is solid but limited, as it contributes to the understanding of non-pharmacological approaches to healthy aging without providing groundbreaking insights or transformative implications for the field.
Sarah Hui, Jimmy George, Minesh Kapadia ...
· alpha-Synuclein
· Krembil Research Institute, Toronto Western Hospital, University Health Network, Toronto, ON, Canada.
· pubmed
Parkinson's disease (PD) is a progressive neurogenerative movement disorder characterized by dopaminergic cell death within the substantia nigra pars compacta (SNpc) due to the aggregation-prone protein α-synuclein. Accumulation of α-synuclein is implicated in mitochondrial dysfu...
Parkinson's disease (PD) is a progressive neurogenerative movement disorder characterized by dopaminergic cell death within the substantia nigra pars compacta (SNpc) due to the aggregation-prone protein α-synuclein. Accumulation of α-synuclein is implicated in mitochondrial dysfunction and disruption of the autophagic turnover of mitochondria, or mitophagy, which is an essential quality control mechanism proposed to preserve mitochondrial fidelity in response to aging and stress. Yet, the precise relationship between α-synuclein accumulation, mitochondrial autophagy, and dopaminergic cell loss remains unresolved. Here, we determine the kinetics of α-synuclein overexpression and mitophagy using the pH-sensitive fluorescent mito-QC reporter. We find that overexpression of mutant A53T α-synuclein in either human SH-SY5Y cells or rat primary cortical neurons induces mitophagy. Moreover, the accumulation of mutant A53T α-synuclein in the SNpc of rats results in mitophagy dysregulation that precedes the onset of dopaminergic neurodegeneration. This study reveals a role for mutant A53T α-synuclein in inducing mitochondrial dysfunction, which may be an early event contributing to neurodegeneration.
Longevity Relevance Analysis
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The paper investigates the role of α-synuclein in mitochondrial dysfunction and mitophagy, which are processes linked to neurodegeneration and aging. While it addresses mechanisms that could contribute to age-related diseases, it primarily focuses on the pathology of Parkinson's disease rather than directly targeting the root causes of aging or lifespan extension. The findings provide solid insights into the early events of neurodegeneration, but the impact on the broader field of longevity research is limited.
Benjamin Cathcart, Sirisha M Cheedipudi, Leila Rouhi ...
· Cardiovascular research
· Center for Cardiovascular Genetics, Institute of Molecular Medicine, The University of Texas Health Science Center, 6770 Bertner Street, Suite C900A, Houston, TX 77030, USA.
· pubmed
An intrinsic feature of gene transcription is the formation of DNA superhelices near the transcription bubble, which are resolved upon induction of transient double-stranded breaks (DSBs) by topoisomerases. Unrepaired DSBs are pathogenic as they lead to cell cycle arrest, senesce...
An intrinsic feature of gene transcription is the formation of DNA superhelices near the transcription bubble, which are resolved upon induction of transient double-stranded breaks (DSBs) by topoisomerases. Unrepaired DSBs are pathogenic as they lead to cell cycle arrest, senescence, inflammation, and organ dysfunction. We posit that DSBs would be more prevalent at the genomic sites that are associated with gene expression. The objectives were to identify and characterize genome-wide DSBs at the nucleotide resolution and determine the association of DSBs with transcription in cardiac myocytes.
Longevity Relevance Analysis
(4)
The paper claims that DNA double-stranded breaks (DSBs) are more prevalent at genomic sites associated with gene expression in cardiac myocytes. This research is relevant as it explores the mechanisms of DNA damage, which is a fundamental aspect of aging and could contribute to understanding the root causes of age-related diseases.
Naibedya Dutta, Joe A Gerke, Sofia F Odron ...
· Caenorhabditis elegans
· Leonard Davis School of Gerontology, University of Southern California, Los Angeles, CA, 90089, USA.
· pubmed
Small molecule inhibitors of the mitochondrial electron transport chain (ETC) hold significant promise to provide valuable insights to the field of mitochondrial research and aging biology. In this study, we investigated two molecules: mycothiazole (MTZ) - from the marine sponge ...
Small molecule inhibitors of the mitochondrial electron transport chain (ETC) hold significant promise to provide valuable insights to the field of mitochondrial research and aging biology. In this study, we investigated two molecules: mycothiazole (MTZ) - from the marine sponge C. mycofijiensis and its more stable semisynthetic analog 8-O-acetylmycothiazole (8-OAc) as potent and selective chemical probes based on their high efficiency to inhibit ETC complex I function. Similar to rotenone (Rote), MTZ, a newly employed ETC complex I inhibitor, exhibited higher cytotoxicity against cancer cell lines compared to certain non-cancer cell lines. Interestingly, 8-OAc demonstrated greater selectivity for cancer cells when compared to both MTZ and Rote, which has promising potential for anticancer therapeutic development. Furthermore, in vivo experiments with these small molecules utilizing a C. elegans model demonstrate their unexplored potential to investigate aging studies. We observed that both molecules have the ability to induce a mitochondria-specific unfolded protein response (UPR
Longevity Relevance Analysis
(4)
The paper investigates the effects of mycothiazole and its analog on mitochondrial function, which is directly related to aging mechanisms. The focus on mitochondrial electron transport chain inhibitors and their potential role in aging studies suggests a contribution to understanding the biological processes underlying aging. However, while the findings are solid, they do not present groundbreaking insights that would significantly advance the field, hence the moderate impact score.
Zailing Yang, Chuan Tian, Zhixu He ...
· Regenerative therapy
· The Basic Medical Laboratory of the 920th Hospital of Joint Logistics Support Force of PLA, The Transfer Medicine Key Laboratory of Cell Therapy Technology of Yunan Province, The Integrated Engineering Laboratory of Cell Biological Medicine of State and Regions, Kunming 650032, Yunnan Province, China.
· pubmed
A decrease in the number and activity of thymic epithelial cells (TECs) is an important factor in thymic degeneration. Mesenchymal stem cells (MSCs) treating thymic ageing is a promising strategy, but the DNA methylation modification mechanism in TECs remains unclear.
A decrease in the number and activity of thymic epithelial cells (TECs) is an important factor in thymic degeneration. Mesenchymal stem cells (MSCs) treating thymic ageing is a promising strategy, but the DNA methylation modification mechanism in TECs remains unclear.
Longevity Relevance Analysis
(4)
The paper addresses the aging of thymic epithelial cells, which is a significant factor in thymic degeneration and immune system aging. By exploring the role of mesenchymal stem cells in reversing thymus aging through DNA methylation reprogramming, it contributes to understanding potential interventions that target the root causes of aging. However, while the findings are solid, they may not have a transformative impact on the broader field of longevity research at this stage.
Sara Abudahab, Mohamad M Kronfol, Mikhail G Dozmorov ...
· DNA Methylation
· Department of Pharmacotherapy and Outcomes Science, School of Pharmacy, Virginia Commonwealth University, Dr. Joseph L. McClay, 6Th floor Smith Building, 410 North 12Th Street, Medical College of Virginia Campus, Richmond, VA, 23298-0533, USA.
· pubmed
Hepatic xenobiotic metabolism and transport decline with age, while intact xenobiotic metabolism is associated with longevity. However, few studies have examined the genome-wide impact of epigenetic aging on these processes. We used reduced representation bisulfite sequencing (RR...
Hepatic xenobiotic metabolism and transport decline with age, while intact xenobiotic metabolism is associated with longevity. However, few studies have examined the genome-wide impact of epigenetic aging on these processes. We used reduced representation bisulfite sequencing (RRBS) to map DNA methylation changes in liver DNA from mice ages 4 and 24 months. We identified several thousand age-associated differentially methylated sites (a-DMS), many of which overlapped genes encoding Phase I and Phase II drug metabolizing enzymes, in addition to ABC and SLC classes of transporters. Notable genes harboring a-DMS were Cyp1a2, Cyp2d9, and Abcc2 that encode orthologs of the human drug metabolizing enzymes CYP1A2 and CYP2D6, and the multidrug resistance protein 2 (MRP2) transporter. Cyp2d9 hypermethylation with age was significantly associated with reduced gene expression, while Abcc2 expression was unchanged with age. Cyp1a2 lost methylation with age while, counterintuitively, its expression also reduced with age. We hypothesized that age-related dysregulation of the hepatic transcriptional machinery caused down-regulation of genes despite age-related hypomethylation. Bioinformatic analysis of hypomethylated a-DMS in our sample found them to be highly enriched for hepatic nuclear factor 4 alpha (HNF4α) binding sites. HNF4α promotes Cyp1a2 expression and is downregulated with age, which could explain the reduction in Cyp1a2 expression. Overall, our study supports the broad impact of epigenetic aging on xenobiotic metabolism and transport. Future work should evaluate the interplay between hepatic nuclear receptor function and epigenetic aging. These results may have implications for studies of longevity and healthy aging.
Longevity Relevance Analysis
(4)
The paper investigates the impact of epigenetic aging on hepatic xenobiotic metabolism, which is relevant to understanding the biological mechanisms of aging and longevity. It explores how age-related changes in DNA methylation affect gene expression related to drug metabolism, potentially influencing healthspan and longevity. However, while the findings contribute to the field, they primarily provide incremental insights rather than groundbreaking discoveries, limiting their overall impact.