| Literature DB >> 33684459 |
Emmy Xue Yun Tay1, Kimberly Chia1, Derrick Sek Tong Ong2.
Abstract
The neural stem cells (NSCs) are essential for normal brain development and homeostasis. The cell state (i.e. quiescent versus activated) and fate (i.e. the cell lineage of choice upon differentiation) of NSCs are tightly controlled by various redox and epigenetic regulatory mechanisms. There is an increasing appreciation that redox and epigenetic regulations are intimately linked, but how this redox-epigenetics crosstalk affects NSC activity remains poorly understood. Another unresolved topic is whether the NSCs actually contribute to brain ageing and neurodegenerative diseases. In this review, we aim to 1) distill concepts that underlie redox and epigenetic regulation of NSC state and fate; 2) provide examples of the redox-epigenetics crosstalk in NSC biology; and 3) highlight potential redox- and epigenetic-based therapeutic opportunities to rescue NSC dysfunctions in ageing and neurodegenerative diseases.Entities:
Keywords: Ageing; Alzheimer's disease; Epigenetics; Metabolism; Neural stem cells; Reactive oxygen species; Redox
Mesh:
Year: 2021 PMID: 33684459 DOI: 10.1016/j.freeradbiomed.2021.02.030
Source DB: PubMed Journal: Free Radic Biol Med ISSN: 0891-5849 Impact factor: 7.376