4.7 Article

Apoptosis resistance of senescent cells is an intrinsic barrier for senolysis induced by cardiac glycosides`

期刊

CELLULAR AND MOLECULAR LIFE SCIENCES
卷 78, 期 23, 页码 7757-7776

出版社

SPRINGER BASEL AG
DOI: 10.1007/s00018-021-03980-x

关键词

Stem cells; Senolysis; Senescence; Apoptosis; Stress resistance

资金

  1. Russian Science Foundation [19-74-10038]
  2. Russian Science Foundation [19-74-10038] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

Cardiac glycosides have been shown to be effective senolytics, but they do not have senolytic ability towards senescent hMSCs from different origins. Senescent hMSCs avoid senolysis by increasing apoptosis resistance and weakening antiapoptotic defense.
Targeted elimination of senescent cells, senolysis, is one of the core trends in the anti-aging therapy. Cardiac glycosides were recently proved to be a broad-spectrum senolytics. Here we tested senolytic properties of cardiac glycosides towards human mesenchymal stem cells (hMSCs). Cardiac glycosides had no senolytic ability towards senescent hMSCs of various origins. Using biological and bioinformatic approaches we compared senescence development in 'cardiac glycosides-sensitive' A549 and `-insensitive' hMSCs. The absence of senolysis was found to be mediated by the effective potassium import and increased apoptosis resistance in senescent hMSCs. Weakening antiapoptotic defense predisposes hMSCs to senolysis. We revealed that apoptosis resistance, previously recognized as a common characteristic of senescence, in fact, is not a general feature of senescent cells. Moreover, only apoptosis-prone senescent cells are sensitive to cardiac glycosides-induced senolysis. Thus, we can speculate that the effectiveness of senolysis might depend on whether senescent cells indeed become apoptosis-resistant as compared to their proliferating counterparts. [GRAPHICS] .

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