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A novel lineage restricted, pericyte-like cell line isolated from human embryonic stem cells

机译:从人类胚胎干细胞分离出的一种新的谱系限制,周细胞样细胞系

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Pericytes (PCs) are endothelium-associated cells that play an important role in normal vascular function and maintenance. We developed a method comparable to GMP quality protocols for deriving self-renewing perivascular progenitors from the human embryonic stem cell (hESC), line ESI-017. We identified a highly scalable, perivascular progenitor cell line that we termed PC-A, which expressed surface markers common to mesenchymal stromal cells. PC-A cells were not osteogenic or adipogenic under standard differentiation conditions and showed minimal angiogenic support function in vitro. PC-A cells were capable of further differentiation to perivascular progenitors with limited differentiation capacity, having osteogenic potential (PC-O) or angiogenic support function (PC-M), while lacking adipogenic potential. Importantly, PC-M cells expressed surface markers associated with pericytes. Moreover, PC-M cells had pericyte-like functionality being capable of co-localizing with human umbilical vein endothelial cells (HUVECs) and enhancing tube stability up to 6 days in vitro. We have thus identified a self-renewing perivascular progenitor cell line that lacks osteogenic, adipogenic and angiogenic potential but is capable of differentiation toward progenitor cell lines with either osteogenic potential or pericyte-like angiogenic function. The hESC-derived perivascular progenitors described here have potential applications in vascular research, drug development and cell therapy.
机译:周细胞(PC)是与内皮相关的细胞,在正常的血管功能和维持中起着重要的作用。我们开发了一种与GMP质量规程相当的方法,用于从人胚胎干细胞(hESC)系ESI-017衍生自我更新的血管周围祖细胞。我们鉴定了一种高度可扩展的血管周祖细胞系,称为PC-A,它表达间充质基质细胞共有的表面标记。在标准分化条件下,PC-A细胞不具有成骨性或成脂性,并且在体外显示出最小的血管生成支持功能。 PC-A细胞能够进一步分化为分化能力有限的血管周祖细胞,具有成骨潜能(PC-O)或血管生成支持功能(PC-M),而缺乏成脂潜能。重要的是,PC-M细胞表达与周细胞相关的表面标记。此外,PC-M细胞具有类似周细胞的功能,能够与人脐静脉内皮细胞(HUVEC)共定位并在体外长达6天的时间内增强管的稳定性。因此,我们已经确定了一种自我更新的血管周围祖细胞系,该细胞系缺乏成骨,脂肪形成和血管生成的潜力,但是能够分化为具有成骨潜力或周细胞样血管生成功能的祖细胞。本文所述的hESC衍生的血管周围祖细胞在血管研究,药物开发和细胞治疗中具有潜在的应用。

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