Human mesenchymal stem cell-replicative senescence and oxidative stress are closely linked to aneuploidy

被引:175
作者
Estrada, J. C. [1 ]
Torres, Y. [1 ]
Benguria, A. [2 ]
Dopazo, A. [2 ]
Roche, E. [3 ]
Carrera-Quintanar, L. [3 ]
Perez, R. A. [1 ]
Enriquez, J. A. [1 ]
Torres, R. [4 ]
Ramirez, J. C. [4 ]
Samper, E. [1 ]
Bernad, A. [1 ,5 ]
机构
[1] Fdn Ctr Nacl Invest Cardiovasc Carlos III CNIC, Dept Cardiovasc Dev & Repair, E-28029 Madrid, Spain
[2] Fdn Ctr Nacl Invest Cardiovasc Carlos III, Genom Unit, Madrid, Spain
[3] Univ Miguel Hernandez, Inst Bioingn, Unidad Bioquim & Terapia Celular, Elche, Spain
[4] Fdn Ctr Nacl Invest Cardiovasc Carlos III, Viral Vectors Unit, Madrid, Spain
[5] Natl Biotechnol Ctr, Madrid, Spain
关键词
Stem cells; MSC; genetic instability; telomerase; aneuploidy; mitochondrial metabolism; INHIBITS PROLIFERATION; SERIAL CULTIVATION; TELOMERE LENGTH; STROMAL CELLS; LIFE-SPAN; CULTURE; FIBROBLASTS; CANCER; TRANSFORMATION; EXPRESSION;
D O I
10.1038/cddis.2013.211
中图分类号
Q2 [细胞生物学];
学科分类号
071013 [干细胞生物学];
摘要
In most clinical trials, human mesenchymal stem cells (hMSCs) are expanded in vitro before implantation. The genetic stability of human stem cells is critical for their clinical use. However, the relationship between stem-cell expansion and genetic stability is poorly understood. Here, we demonstrate that within the normal expansion period, hMSC cultures show a high percentage of aneuploid cells that progressively increases until senescence. Despite this accumulation, we show that in a heterogeneous culture the senescence-prone hMSC subpopulation has a lower proliferation potential and a higher incidence of aneuploidy than the non-senescent subpopulation. We further show that senescence is linked to a novel transcriptional signature that includes a set of genes implicated in ploidy control. Overexpression of the telomerase catalytic subunit (human telomerase reverse transcriptase, hTERT) inhibited senescence, markedly reducing the levels of aneuploidy and preventing the dysregulation of ploidy-controlling genes. hMSC-replicative senescence was accompanied by an increase in oxygen consumption rate (OCR) and oxidative stress, but in long-term cultures that overexpress hTERT, these parameters were maintained at basal levels, comparable to unmodified hMSCs at initial passages. We therefore propose that hTERT contributes to genetic stability through its classical telomere maintenance function and also by reducing the levels of oxidative stress, possibly, by controlling mitochondrial physiology. Finally, we propose that aneuploidy is a relevant factor in the induction of senescence and should be assessed in hMSCs before their clinical use.
引用
收藏
页码:e691 / e691
页数:13
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