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Reversine ameliorates hallmarks of cellular senescence in human skeletal myoblasts via reactivation of autophagy

Nika Rajabian, Debanik Choudhury, Izuagie Ikhapoh, Shilpashree Saha, Aishwarya S. Kalyankar, Pihu Mehrotra, Aref Shahini, Kendall Breed, Stelios T. Andreadis

Aging Cell · 2023 · ▲ 17 citations

Abstract

Cellular senescence(definition) leads to the depletion of myogenic progenitors and decreased regenerative capacity. We show that the small molecule 2,6-disubstituted purine, reversine, can improve some well-known hallmarks of cellular aging in senescent myoblast cells. Reversine reactivated autophagy(definition) and insulin signaling pathway via upregulation of Adenosine Monophosphate-activated protein kinase (AMPK) and Akt2, restoring insulin sensitivity and glucose uptake in senescent cells. Reversine also restored the loss of connectivity of glycolysis to the TCA cycle, thus restoring dysfunctional mitochondria and the impaired myogenic differentiation potential of senescent myoblasts. Altogether, our data suggest that cellular senescence can be reversed by treatment with a single small molecule without employing genetic reprogramming technologies.

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OpenAlex
DOI
10.1111/acel.13764
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2026-06-19 MST

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APA
Rajabian, N., Choudhury, D., Ikhapoh, I., Saha, S., Kalyankar, A.S., Mehrotra, P., Shahini, A., Breed, K., &amp; Andreadis, S.T. (2023). Reversine ameliorates hallmarks of cellular senescence in human skeletal myoblasts via reactivation of autophagy. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13764
Vancouver
Rajabian N, Choudhury D, Ikhapoh I, Saha S, Kalyankar AS, Mehrotra P, et al. Reversine ameliorates hallmarks of cellular senescence in human skeletal myoblasts via reactivation of autophagy. Aging Cell. 2023. doi:10.1111/acel.13764.
BibTeX
@article{nika2023Revers, title = {Reversine ameliorates hallmarks of cellular senescence in human skeletal myoblasts via reactivation of autophagy}, author = {Nika Rajabian and Debanik Choudhury and Izuagie Ikhapoh and Shilpashree Saha and Aishwarya S. Kalyankar and Pihu Mehrotra and Aref Shahini and Kendall Breed and Stelios T. Andreadis}, journal = {Aging Cell}, year = {2023}, doi = {10.1111/acel.13764}, }

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