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敲低 p21(Cip1/Waf1) 可增强人骨髓间充质干细胞的增殖、干性标志物的表达和成骨潜能。

Knockdown of p21(Cip1/Waf1) enhances proliferation, the expression of stemness markers, and osteogenic potential in human mesenchymal stem cells.

机构信息

Department of Dentistry, Institute of Oral Biology, National Yang-Ming University, Taipei 112, Taiwan.

出版信息

Aging Cell. 2011 Apr;10(2):349-61. doi: 10.1111/j.1474-9726.2011.00676.x. Epub 2011 Feb 23.

Abstract

Mammalian aging of many tissues is associated with a decline in the replicative and functional capacity of somatic stem cells. Understanding the basis of this decline is a major goal of aging research. Human bone marrow-derived multipotent stromal cells (MSCs) have been applied in the treatment of fracture nonunion. Clinical application of MSCs requires abundant cells that can be overcome by ex vivo expansion of cells, but often at the expense of stemness and differentiation potentiality. We first demonstrated that late-passage MSCs exhibited decreased proliferation capacity, reduced expression of stemness markers such as Oct-4 and Nanog, and deterioration of osteogenic potential. Further, late-passage MSCs showed increased expression of p21(Cip1/Waf1) (p21), an inhibitor of the cyclin-dependent kinase. Knockdown of p21 by lentivirus-mediated shRNAs against p21 in late-passage MSCs increased the proliferation capacity, the expression of Oct-4 and Nanog, and osteogenic potential compared with cells transduced with control shRNA. More importantly, reduction in p21 expression in MSCs enhanced the bone repair capacity of MSCs in a rodent calvarial defect model. Knockdown of p21 in MSCs also increased the telomerase activity and telomere length, and did not show chromosomal abnormalities or acquire transformation ability. Therefore, these data successfully demonstrate the involvement of senescence gene in the expression of stemness markers and osteogenic potential of MSCs.

摘要

哺乳动物的许多组织衰老与体干细胞的复制和功能能力下降有关。了解这种下降的基础是衰老研究的主要目标。人类骨髓来源的多能基质细胞(MSCs)已应用于骨折不愈合的治疗。MSCs 的临床应用需要大量的细胞,可以通过细胞的体外扩增来克服,但往往是以干细胞特性和分化潜能为代价的。我们首先证明,晚期传代 MSCs 表现出增殖能力下降,干性标志物如 Oct-4 和 Nanog 的表达减少,以及成骨潜能恶化。此外,晚期传代 MSCs 表现出 p21(Cip1/Waf1)(p21)的表达增加,p21 是细胞周期蛋白依赖性激酶的抑制剂。与转导对照 shRNA 的细胞相比,用慢病毒介导的 shRNA 敲低晚期传代 MSCs 中的 p21 可增加增殖能力、Oct-4 和 Nanog 的表达以及成骨潜能。更重要的是,在 MSCs 中降低 p21 表达可增强 MSCs 在啮齿动物颅顶骨缺损模型中的骨修复能力。敲低 MSCs 中的 p21 还增加了端粒酶活性和端粒长度,并且没有显示出染色体异常或获得转化能力。因此,这些数据成功地证明了衰老基因参与 MSCs 干性标志物和成骨潜能的表达。

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