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A stress-induced cellular aging model with postnatal neural stem cells

Dong Cm, Wang Xl, Wang Gm, Zhang Wj, Lei Zhu, Shan Gao, Yang Dj, Y Qin, Liang Qj, Chen Yl, H-T Deng, Ke Ning, Liang Ab, Gao Zl, Jie Xu

Cell Death and Disease · 2014 · ▲ 71 citations

Abstract

Aging refers to the physical and functional decline of the tissues over time that often leads to age-related degenerative diseases. Accumulating evidence implicates that the senescence(definition) of neural stem cells (NSCs) is of paramount importance to the aging of central neural system (CNS). However, exploration of the underlying molecular mechanisms has been hindered by the lack of proper aging models to allow the mechanistic examination within a reasonable time window. In the present study, we have utilized a hydroxyurea (HU) treatment protocol and effectively induced postnatal subventricle NSCs to undergo cellular senescence as determined by augmented senescence-associated-β-galactosidase (SA-β-gal) staining, decreased proliferation and differentiation capacity, increased G0/G1 cell cycle arrest, elevated reactive oxygen species (ROS) level and diminished apoptosis. These phenotypic changes were accompanied by a significant increase in p16, p21 and p53 expression, as well as a decreased expression of key proteins in various DNA repair pathways such as xrcc2, xrcc3 and ku70. Further proteomic analysis suggests that multiple pathways are involved in the HU-induced NSC senescence, including genes related to DNA damage and repair, mitochondrial dysfunction(definition) and the increase of ROS level. Intriguingly, compensatory mechanisms may have also been initiated to interfere with apoptotic signaling pathways and to minimize the cell death by downregulating Bcl2-associated X protein (BAX) expression. Taken together, we have successfully established a cellular model that will be of broad utilities to the molecular exploration of NSC senescence and aging.

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Provenance

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OpenAlex
DOI
10.1038/cddis.2014.82
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2026-06-11 MST

Cite this

APA
Cm, D., Xl, W., Gm, W., Wj, Z., Zhu, L., Gao, S., Dj, Y., Qin, Y., Qj, L., Yl, C., Deng, H., Ning, K., Ab, L., Zl, G., &amp; Xu, J. (2014). A stress-induced cellular aging model with postnatal neural stem cells. <em>Cell Death and Disease</em>. https://doi.org/10.1038/cddis.2014.82
Vancouver
Cm D, Xl W, Gm W, Wj Z, Zhu L, Gao S, et al. A stress-induced cellular aging model with postnatal neural stem cells. Cell Death and Disease. 2014. doi:10.1038/cddis.2014.82.
BibTeX
@article{dong2014Astres, title = {A stress-induced cellular aging model with postnatal neural stem cells}, author = {Dong Cm and Wang Xl and Wang Gm and Zhang Wj and Lei Zhu and Shan Gao and Yang Dj and Y Qin and Liang Qj and Chen Yl and H-T Deng and Ke Ning and Liang Ab and Gao Zl and Jie Xu}, journal = {Cell Death and Disease}, year = {2014}, doi = {10.1038/cddis.2014.82}, }

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