首页> 外文期刊>Biochemical and Biophysical Research Communications >Induced pluripotent stem cells' self-renewal and pluripotency is maintained by a bovine granulosa cell line-conditioned medium.
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Induced pluripotent stem cells' self-renewal and pluripotency is maintained by a bovine granulosa cell line-conditioned medium.

机译:诱导的多能干细胞的自我更新和多能性由牛颗粒细胞系条件培养基维持。

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摘要

Induced pluripotent stem cells (iPSCs) are a promising type of stem cells, comparable to embryonic stem cells (ESCs) in terms of self-renew and pluripotency, generated by reprogramming somatic cells. These cells are an attractive approach to supply patient-specific pluripotent cells, for producing in vitro models of disease, drug discovery, toxicology and potentially treating degenerative disease circumventing immune rejection. In spite of the great advance since iPSCs' establishment, their obtention and propagation is an increasing area of great interest. In a recent work, we have shown that the conditioned medium from a bovine granulosa cell line (BGC-CM) is able to preserve the basic properties of mESCs. Therefore, based on our previous results and the reported resemblance between iPSCs and ESCs, we hypothesized that BGC-CM could provide a favorable context to culturing iPSCs. In this work, we have reprogrammed mouse embryonic fibroblasts obtaining iPSC lines, and showed that they can be propagated in BGC-CM while maintaining self-renewal and pluripotency, evidenced by expression of specific gene markers and capability of in vitro and in vivo differentiation to cell types from the three germ layers. We believe that these findings may provide a novel context to propagate iPSCs to study the molecular mechanisms involved in self-renewal and pluripotency.
机译:诱导多能干细胞(iPSC)是一种有前途的干细胞,就自我更新和多能性而言,可通过重编程体细胞产生,与胚胎干细胞(ESC)相当。这些细胞是提供患者特异性多能细胞的一种有吸引力的方法,用于产生疾病,药物发现,毒理学的体外模型,并可能治疗绕过免疫排斥的退行性疾病。尽管自iPSC成立以来取得了巨大进步,但它们的出现和传播却引起了人们的极大兴趣。在最近的工作中,我们已经表明,来自牛颗粒细胞系(BGC-CM)的条件培养基能够保留mESC的基本特性。因此,根据我们以前的结果以及所报道的iPSC和ESC之间的相似性,我们假设BGC-CM可以为培养iPSC提供有利的环境。在这项工作中,我们对获得iPSC系的小鼠胚胎成纤维细胞进行了重新编程,并表明它们可以在BGC-CM中繁殖,同时保持自我更新和多能性,这通过特定基因标志物的表达以及体外和体内分化能力来证明。来自三个细菌层的细胞类型。我们认为,这些发现可能为传播iPSC提供了一个新颖的背景,以研究参与自我更新和多能性的分子机制。

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