| Literature DB >> 32243258 |
Leire Moreno-Cugnon1, Olatz Arrizabalaga1, Irantzu Llarena2, Ander Matheu1,3,4.
Abstract
Age-progressive neural stem cell (NSC) dysfunction leads to impaired neurogenesis, cognitive decline and the onset of age-related neurodegenerative pathologies. p38MAPK signalling pathway limits stem cell activity during aging in several tissues. Its role in NSCs remains controversial. In this work, we show that p38MAPK activity increases in NSCs with age in the subventricular zone (SVZ) and its pharmacological inhibition is sufficient to rejuvenate their activity in vitro. These data reveal a cell-autonomous role for p38MAPK increase in decreasing NSC homeostasis with age. This information shed light in the role of p38MAPK in NSC aging.Entities:
Keywords: aging; neural stem cell; p38MAPK; pharmacological inhibition
Year: 2020 PMID: 32243258 PMCID: PMC7185101 DOI: 10.18632/aging.102994
Source DB: PubMed Journal: Aging (Albany NY) ISSN: 1945-4589 Impact factor: 5.682
Figure 1Increased p38MAPK activity in SVZ neurogenic niche with aging. (A) Representative immunofluorescence for P-p38MAPK in SVZ of young (2 month-old) and aged (over 24 month-old) C57BL/6J mice (n≥2). (B) Quantification of number of P-p38MAPK positive cells in this region. (C) MAPK11, MAPK12, MAPK13 and MAPK14 mRNA levels in SVZ of young (2 month-old) and aged (over 24 month-old) C57BL/6J mice (n≥4).
Figure 2p38MAPK activity regulates NSC/progenitor aging (A) Quantification of neurospheres from young (2 month-old) and aged (over 24 month-old) C57BL/6J mice (n=3). (B) P-p38MAPK, SOX2 and p16Ink4a expression in neurospheres derived from animals at the indicated ages (n=3). (C) Analysis of MAPK isoforms in neurospheres. (D) Representative image and (E) quantification of neurospheres derived from the SVZ of young and aged C57BL/6J mice treated with p38MAPK inhibitor (PH-797804) or control (DMSO) (n=4). (F) Quantification of the diameter of secondary neurospheres derived from aged mice treated with PH-797804 or control (n=4). (G) Representative western blot of P-p38MAPK, p38MAPK, SOX9 and ß-actin in 2ry neurospheres from aged mice (n=2). (H) Quantification of Sox2 mRNA levels in aged cells (n=3).
Figure 3Pharmacological inhibition of p38MAPK rejuvenates NSC function (A) Representative image and (B, C) quantification of number of neurospheres and their diameter at passage 2 (2ry) and 7 (7ry) from SVZ C57BL/6J mice (n=3). (D) Representative western blot of P-p38MAPK, SOX2, p16Ink4a and ß-actin at indicated conditions (n=3). (E) Relative number of neurospheres formed from passage 7 cells treated with p38MAPK inhibitor (PH-797804) or control (DMSO) (n=3). (F) Quantification of the diameter of neurospheres from 7ry passage treated with PH-797804 or control (n=3). (G) Sox2, Sox9 and Mkp1 expression in neurospheres maintained for passages (n=3).