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Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism
Rong Wang, Zhen Yu, Bharath Sunchu, James Shoaf, Ivana N. Dang, Stephanie Zhao, Kelsey Caples, L. M. Bradley, Laura M. Beaver, Emily Ho, Christiane V. Löhr, Viviana Pérez
Aging Cell · 2017 · ▲ 349 citations
Disabled macroautophagy
Deregulated nutrient-sensing
Cellular senescence
Chronic inflammation
Rapamycin / mTOR inhibition
Cell culture / in vitro
Mouse
In vitro
Abstract
Senescent cells contribute to age-related pathology and loss of function, and their selective removal improves physiological function and extends longevity. mTOR(definition)-inhibiting drug studied for extending healthspan and lifespan." style="text-decoration:underline dotted; text-underline-offset:2px; cursor:help;">Rapamycin(definition), an inhibitor of mTOR, inhibits cell senescence(definition) in vitro and increases longevity in several species. Nrf2 levels have been shown to decrease with aging and silencing Nrf2 gene induces premature senescence. Therefore, we explored whether Nrf2 is involved in the mechanism by which rapamycin delays cell senescence. In wild-type (WT) mouse fibroblasts, rapamycin increased the levels of Nrf2, and this correlates with the activation of autophagy(definition) and a reduction in the induction of cell senescence, as measured by SA-β-galactosidase (β-gal) staining, senescence-associated secretory phenotype (SASP), and p16 and p21 molecular markers. In Nrf2KO fibroblasts, however, rapamycin still decreased β-gal staining and the SASP, but rapamycin did not activate the autophagy pathway or decrease p16 and p21 levels. These observations were further confirmed in vivo using Nrf2KO mice, where rapamycin treatment led to a decrease in β-gal staining and pro-inflammatory cytokines in serum and fat tissue; however, p16 levels were not significantly decreased in fat tissue. Consistent with literature demonstrating that the Stat3 pathway is linked to the production of SASP, we found that rapamycin decreased activation of the Stat3 pathway in cells or tissue samples from both WT and Nrf2KO mice. Our data thus suggest that cell senescence is a complex process that involves at least two arms, and rapamycin uses Nrf2 to regulate cell cycle arrest, but not the production of SASP.
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- 10.1111/acel.12587
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- 2026-06-13 MST
Cite this
APA
Wang, R., Yu, Z., Sunchu, B., Shoaf, J., Dang, I.N., Zhao, S., Caples, K., Bradley, L.M., Beaver, L.M., Ho, E., Löhr, C.V., & Pérez, V. (2017). Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism. <em>Aging Cell</em>. https://doi.org/10.1111/acel.12587
Vancouver
Wang R, Yu Z, Sunchu B, Shoaf J, Dang IN, Zhao S, et al. Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism. Aging Cell. 2017. doi:10.1111/acel.12587.
BibTeX
@article{rong2017Rapamy,
title = {Rapamycin inhibits the secretory phenotype of senescent cells by a Nrf2-independent mechanism},
author = {Rong Wang and Zhen Yu and Bharath Sunchu and James Shoaf and Ivana N. Dang and Stephanie Zhao and Kelsey Caples and L. M. Bradley and Laura M. Beaver and Emily Ho and Christiane V. Löhr and Viviana Pérez},
journal = {Aging Cell},
year = {2017},
doi = {10.1111/acel.12587},
}
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