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Reversal of biological age in multiple rat organs by young porcine plasma fraction

Steve Horvath, Kavita Singh, Ken Raj, Shraddha I. Khairnar, Akshay Sanghavi, Agnivesh Shrivastava, Joseph A. Zoller, Caesar Z. Li, Claudia Beatriz Hereñú, Martina Canatelli-Mallat, Marianne Lehmann, Siniša Habazin, Mislav Novokmet, Frano Vučković, Leah C. Solberg Woods

GeroScience · 2023 · ▲ 30 citations

Abstract

Young blood plasma is known to confer beneficial effects on various organs in mice and rats. However, it was not known whether plasma from young adult pigs rejuvenates old rat tissues at the epigenetic level; whether it alters the epigenetic clock(definition), which is a highly accurate molecular biomarker of aging. To address this question, we developed and validated six different epigenetic clocks for rat tissues that are based on DNA methylation values derived from n = 613 tissue samples. As indicated by their respective names, the rat pan-tissue clock can be applied to DNA methylation profiles from all rat tissues, while the rat brain, liver, and blood clocks apply to the corresponding tissue types. We also developed two epigenetic clocks that apply to both human and rat tissues by adding n = 1366 human tissue samples to the training data. We employed these six rat clocks to investigate the rejuvenation effects of a porcine plasma fraction treatment in different rat tissues. The treatment more than halved the epigenetic ages of blood, heart, and liver tissue. A less pronounced, but statistically significant, rejuvenation effect could be observed in the hypothalamus. The treatment was accompanied by progressive improvement in the function of these organs as ascertained through numerous biochemical/physiological biomarkers, behavioral responses encompassing cognitive functions. An immunoglobulin G (IgG) N-glycosylation pattern shift from pro- to anti-inflammatory also indicated reversal of glycan aging. Overall, this study demonstrates that a young porcine plasma-derived treatment markedly reverses aging in rats according to epigenetic clocks, IgG glycans, and other biomarkers of aging.

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Provenance

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OpenAlex
DOI
10.1007/s11357-023-00980-6
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2026-07-22 MST

Cite this

APA
Horvath, S., Singh, K., Raj, K., Khairnar, S.I., Sanghavi, A., Shrivastava, A., Zoller, J.A., Li, C.Z., Hereñú, C.B., Canatelli-Mallat, M., Lehmann, M., Habazin, S., Novokmet, M., Vučković, F., Woods, L.C.S., Martinez, A.G., Wang, T., Chiavellini, P., Levine, A.J., &amp; Chen, H. (2023). Reversal of biological age in multiple rat organs by young porcine plasma fraction. <em>GeroScience</em>. https://doi.org/10.1007/s11357-023-00980-6
Vancouver
Horvath S, Singh K, Raj K, Khairnar SI, Sanghavi A, Shrivastava A, et al. Reversal of biological age in multiple rat organs by young porcine plasma fraction. GeroScience. 2023. doi:10.1007/s11357-023-00980-6.
BibTeX
@article{steve2023Revers, title = {Reversal of biological age in multiple rat organs by young porcine plasma fraction}, author = {Steve Horvath and Kavita Singh and Ken Raj and Shraddha I. Khairnar and Akshay Sanghavi and Agnivesh Shrivastava and Joseph A. Zoller and Caesar Z. Li and Claudia Beatriz Hereñú and Martina Canatelli-Mallat and Marianne Lehmann and Siniša Habazin and Mislav Novokmet and Frano Vučković and Leah C. Solberg Woods and Angel Garcia Martinez and Tengfei Wang and Priscila Chiavellini and Andrew J. Levine and Hao Chen and Robert T. Brooke and Juozas Gordevičius and Gordan Lauc and Rodolfo G. Goya and Harold L. Katcher}, journal = {GeroScience}, year = {2023}, doi = {10.1007/s11357-023-00980-6}, }

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