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August 2019 in “Nutrients” Eating barley for life may lead to healthier aging in mice.
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The study concludes that long COVID recovery involves time, various treatments, and a strong patient-provider relationship.
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This study demonstrates that periodic exposure to red light can mitigate aging in mice by enhancing histone H3 Lys9 acetylation (H3K9ac) through the modulation of fatty acid metabolism. Red light exposure reduces SIRT4 protein levels in keratinocytes, which activates glycolysis, fatty acid metabolism, and the TCA cycle. The decrease in SIRT4 enhances mitochondrial fatty acid oxidation and activates SIRT1, which in turn activates PPAR-α, leading to increased expression of lipid metabolism-related genes. This results in the accumulation of acetyl-CoA, increased H3K9ac levels, and altered expression of senescence-related genes, effectively reducing cellular aging through coordinated regulation of metabolism, inflammation, and gene expression.
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January 2019 in “Aging” Lack of functional CYLD in mice leads to early aging and cancer.
March 2024 in “Jagiellonian University Repository (Jagiellonian University)” Genetic and lifestyle factors influence skin and hair aging, and prediction models can help assess aging and cosmetic treatments.
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This study demonstrates that periodic exposure to red light can mitigate aging in mice by enhancing histone H3 Lys9 acetylation (H3K9ac) through the modulation of fatty acid metabolism. Red light exposure reduces SIRT4 protein levels in keratinocytes, which activates glycolysis, fatty acid metabolism, and the TCA cycle. The decrease in SIRT4 enhances mitochondrial fatty acid oxidation and activates SIRT1, which in turn alleviates inhibition on PPAR-α, leading to increased expression of lipid metabolism-related genes. This results in the accumulation of acetyl-CoA, increased H3K9ac levels, and altered expression of senescence-related genes, effectively reducing cellular aging through coordinated regulation of metabolism, inflammation, and gene expression.
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Spiny mice have resilient, large mitochondria that help them regenerate tissue.
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September 2021 in “Physiology News” Understanding how different body systems interact can improve how we prevent or treat frailty in aging.
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December 2022 in “bioRxiv (Cold Spring Harbor Laboratory)” miR-29 is a key factor that accelerates aging.