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长期培养对人胚胎干细胞衰老的影响。

Effects of long-term culture on human embryonic stem cell aging.

机构信息

Department of Medicine, Stanford University School of Medicine , Stanford, CA, USA.

出版信息

Stem Cells Dev. 2011 Jan;20(1):127-38. doi: 10.1089/scd.2009.0475. Epub 2010 Sep 9.

Abstract

In recent years, human embryonic stem (hES) cells have become a promising cell source for regenerative medicine. Although hES cells have the ability for unlimited self-renewal, potential adverse effects of long-term cell culture upon hES cells must be investigated before therapeutic applications of hES cells can be realized. Here we investigated changes in molecular profiles associated with young (<60 passages) and old (>120 passages) cells of the H9 hES cell line as well as young (<85 passages) and old (>120 passages) cells of the PKU1 hES cell line. Our results show that morphology, stem cell markers, and telomerase activity do not differ significantly between young and old passage cells. Cells from both age groups were also shown to differentiate into derivatives of all 3 germ layers upon spontaneous differentiation in vitro. Interestingly, mitochondrial dysfunction was found to occur with prolonged culture. Old passage cells of both the H9 and PKU1 lines were characterized by higher mitochondrial membrane potential, larger mitochondrial morphology, and higher reactive oxygen species content than their younger counterparts. Teratomas derived from higher passage cells were also found to have an uneven preference for differentiation compared with tumors derived from younger cells. These findings suggest that prolonged culture of hES cells may negatively impact mitochondrial function and possibly affect long-term pluripotency.

摘要

近年来,人类胚胎干细胞(hES)已成为再生医学有前途的细胞来源。尽管 hES 细胞具有无限自我更新的能力,但在实现 hES 细胞的治疗应用之前,必须研究长期细胞培养对 hES 细胞的潜在不良影响。在这里,我们研究了与 H9 hES 细胞系的年轻(<60 代)和年老(>120 代)细胞以及 PKU1 hES 细胞系的年轻(<85 代)和年老(>120 代)细胞相关的分子谱的变化。我们的结果表明,年轻和年老代细胞之间的形态、干细胞标志物和端粒酶活性没有显著差异。来自两个年龄组的细胞在体外自发分化时也被证明能分化为所有 3 个胚层的衍生物。有趣的是,随着培养时间的延长,发现线粒体功能失调。与年轻细胞相比,H9 和 PKU1 系的年老代细胞具有更高的线粒体膜电位、更大的线粒体形态和更高的活性氧含量的特征。与来自年轻细胞的肿瘤相比,来自更高代细胞的畸胎瘤也发现有不均匀的分化偏好。这些发现表明,hES 细胞的长期培养可能对线粒体功能产生负面影响,并可能影响长期多能性。

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