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Q4 2023
ISSN 2817-8831
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Q4 2023
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Fundamental equations linking methylation dynamics to maximum lifespan in mammals

Fundamental equations linking methylation dynamics to maximum lifespan in mammals

Steve Horvath, Joshua Zhang, Amin Haghani, Ake T. Lu, Zhe Fei

Methylation change rates in chromatin state and lifespan show an inverse relationship in a study of 125 mammalian species.

Q4 2023
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Unlocking cellular plasticity: Enhancing human iPSC reprogramming through bromodomain inhibition and extracellular matrix gene expression regulation

Unlocking cellular plasticity: Enhancing human iPSC reprogramming through bromodomain inhibition and extracellular matrix gene expression regulation

Jun Yang, H. Karimi Kinyamu, James M. Ward, Erica Scappini, Trevor K. Archer

PFI-3 enhances iPSC reprogramming by inducing MET in fibroblasts, upregulating E-cadherin, and reducing ECM gene expression, including collagen.

Q4 2023
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Epistemic uncertainty challenges aging clock reliability in predicting rejuvenation effects

Epistemic uncertainty challenges aging clock reliability in predicting rejuvenation effects

Dmitrii Kriukov, Ekaterina Kuzmina, Evgeniy Efimov, Dmitry V. Dylov, Ekaterina E. Khrameeva

A critique of the epigenetic aging clocks for their high uncertainty in rejuvenation predictions during cellular reprogramming, due to misrepresentation in training data and inconsistent outcomes. It suggests incorporating uncertainty estimates into aging clock models for more accurate assessments.

Q4 2023
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The germline regulates longevity and somatic repair in a sex-specific manner

The germline regulates longevity and somatic repair in a sex-specific manner

Germline manipulation in turquoise killifish shows sex-specific aging effects: depletion boosts female repair and male lifespan, indicating metabolic rejuvenation and pro-longevity genes, challenging classical evolutionary tradeoffs.

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Fundamental equations linking methylation dynamics to maximum lifespan in mammals

Fundamental equations linking methylation dynamics to maximum lifespan in mammals

Methylation change rates in chromatin state and lifespan show an inverse relationship in a study of 125 mammalian species.

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Nature of epigenetic aging from a single-cell perspective

Nature of epigenetic aging from a single-cell perspective

Epigenetic aging involves both co-regulated and stochastic DNA methylation changes, comparing tissue and single-cell data with development stages and RNA analysis. A new algorithm identifies CpG clusters, offering insights into aging interventions.

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Exceptional longevity of mammalian ovarian and oocyte macromolecules throughout the reproductive lifespan

Exceptional longevity of mammalian ovarian and oocyte macromolecules throughout the reproductive lifespan

Exceptionally stable proteins and macromolecules are discovered in mammalian ovaries and oocytes, essential for reproductive health across the lifespan. These long-lived molecules are linked to both the maintenance and age-related deterioration of reproductive tissues.

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