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Rejuvenating effects of young extracellular vesicles in aged rats and in cellular models of human senescence.

Grigorian Shamagian L, Rogers RG, Luther K, Angert D, Echavez A, Liu W, Middleton R, Antes T, Valle J, Fourier M, Sanchez L, Jaghatspanyan E, Mariscal J, Zhang R, Marbán E.

Scientific reports · 2023 · ▲ 18 citations

Abstract

Rejuvenation of an old organism was achieved in heterochronic parabiosis experiments, implicating different soluble factors in this effect. Extracellular vesicles (EVs) are the secretory effectors of many cells, including cardiosphere-derived cells (CDCs) with demonstrated anti-senescent effect. 1. To determine the role of EVs (versus other blood fractions) on the rejuvenating effect of the young blood. 2. To evaluate the anti-aging properties of therapeutically administered EVs secreted by young-CDCs in an old organism. Neonatal blood fractioned in 4 components (whole blood, serum, EV-depleted serum and purified EVs) was used to treat old human cardiac stromal cells (CSPCs). CDCs were generated from neonatal rat hearts and the secreted CDC-EVs were purified. CDC-EVs were then tested in naturally-aged rats, using monthly injections over 4-months period. For validation in human samples, pediatric CDC-EVs were tested in aged human CSPCs and progeric fibroblasts. While the purified EVs reproduced the rejuvenating effects of the whole blood, CSPCs treated with EV-depleted serum exhibited the highest degree of senescence(definition). Treatment with young CDC-EVs induce structural and functional improvements in the heart, lungs, skeletal muscle, and kidneys of old rats, while favorably modulating glucose metabolism and anti-senescence pathways. Lifespan was prolonged. EVs secreted by young CDCs exert broad-ranging anti-aging effects in aged rodents and in cellular models of human senescence. Our work not only identifies CDC-EVs as possible therapeutic candidates for a wide range of age-related pathologies, but also raises the question of whether EVs function as endogenous modulators of senescence.

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Provenance

Source
Europe PMC
DOI
10.1038/s41598-023-39370-5
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2026-07-01 MST

Cite this

APA
L, G.S., RG, R., K, L., D, A., A, E., W, L., R, M., T, A., J, V., M, F., L, S., E, J., J, M., R, Z., &amp; E., M. (2023). Rejuvenating effects of young extracellular vesicles in aged rats and in cellular models of human senescence. <em>Scientific reports</em>. https://doi.org/10.1038/s41598-023-39370-5
Vancouver
L GS, RG R, K L, D A, A E, W L, et al. Rejuvenating effects of young extracellular vesicles in aged rats and in cellular models of human senescence. Scientific reports. 2023. doi:10.1038/s41598-023-39370-5.
BibTeX
@article{grigorian2023Rejuve, title = {Rejuvenating effects of young extracellular vesicles in aged rats and in cellular models of human senescence.}, author = {Grigorian Shamagian L and Rogers RG and Luther K and Angert D and Echavez A and Liu W and Middleton R and Antes T and Valle J and Fourier M and Sanchez L and Jaghatspanyan E and Mariscal J and Zhang R and Marbán E.}, journal = {Scientific reports}, year = {2023}, doi = {10.1038/s41598-023-39370-5}, }

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