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Transient non-integrative expression of nuclear reprogramming factors promotes multifaceted amelioration of aging in human cells.

Citation
Sarkar, T. J., et al. “Transient Non-Integrative Expression Of Nuclear Reprogramming Factors Promotes Multifaceted Amelioration Of Aging In Human Cells.”. Nature Communications, p. 1545.
Center Stanford University
Author Tapash Jay Sarkar, Marco Quarta, Shravani Mukherjee, Alex Colville, Patrick Paine, Linda Doan, Christopher M Tran, Constance R Chu, Steve Horvath, Lei S Qi, Nidhi Bhutani, Thomas A Rando, Vittorio Sebastiano
Abstract

Aging is characterized by a gradual loss of function occurring at the molecular, cellular, tissue and organismal levels. At the chromatin level, aging associates with progressive accumulation of epigenetic errors that eventually lead to aberrant gene regulation, stem cell exhaustion, senescence, and deregulated cell/tissue homeostasis. Nuclear reprogramming to pluripotency can revert both the age and the identity of any cell to that of an embryonic cell. Recent evidence shows that transient reprogramming can ameliorate age-associated hallmarks and extend lifespan in progeroid mice. However, it is unknown how this form of rejuvenation would apply to naturally aged human cells. Here we show that transient expression of nuclear reprogramming factors, mediated by expression of mRNAs, promotes a rapid and broad amelioration of cellular aging, including resetting of epigenetic clock, reduction of the inflammatory profile in chondrocytes, and restoration of youthful regenerative response to aged, human muscle stem cells, in each case without abolishing cellular identity.

Year of Publication
2020
Journal
Nature communications
Volume
11
Issue
1
Number of Pages
1545
Date Published
12/2020
ISSN Number
2041-1723
DOI
10.1038/s41467-020-15174-3
Alternate Journal
Nat Commun
PMID
32210226
PMCID
PMC7093390
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