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用于人类多能干细胞增殖的工程肽修饰水凝胶平台

Engineered peptide modified hydrogel platform for propagation of human pluripotent stem cells.

作者信息

Richardson Thomas, Wiegand Connor, Adisa Fatimah, Ravikumar K, Candiello Joe, Kumta Prashant, Banerjee Ipsita

机构信息

Department of Chemical and Petroleum Engineering, University of Pittsburgh, United States.

Department of Chemical and Petroleum Engineering, University of Pittsburgh, United States; Department of Bioengineering, University of Pittsburgh, United States; McGowan Institute for Regenerative Medicine, United States.

出版信息

Acta Biomater. 2020 Sep 1;113:228-239. doi: 10.1016/j.actbio.2020.06.034. Epub 2020 Jun 27.

Abstract

Human pluripotent stem cells (hPSCs) have enormous potential to alleviate cell needs for regenerative medicine, however these cells require expansion in cell colonies to maintain cell-cell contact, thus limiting the scalability needed to meet the demands of cell therapy. While the use of a Rho-associated protein kinase (ROCK) inhibitor will allow for culture of single cell hPSCs, typically only 50% of cells are recovered after dissociation. When hPSCs lose cell-cell contact through E-cadherin, dissociation induced apoptosis occurs. In this study, we hypothesized that the extracellular E-cadherin domain of hPSCs will bind to synthetic E-cadherin peptides presented on a hydrogel substrate, mimicking the required cell-cell contact and thereby retaining single-cell viability and clonogenicity. Hence, the objective of this study was to functionalize alginate hydrogels with synthetic peptides mimicking E-cadherin and evaluate peptide performance in promoting cell attachment, viability, maintaining pluripotency, and differentiation potential. We observed that alginate conjugated with synthetic E-cadherin peptides not only supported initial cell attachment with high viability, but also supported hPSC propagation and high fold expansion. hPSCs propagated on the peptide modified substrates maintained the hPSC characteristic pluripotency and differentiation potential, characterized by both spontaneous and directed differentiation. STATEMENT OF SIGNIFICANCE: Human pluripotent stem cells (hPSCs) have enormous potential to alleviate cell needs for regenerative medicine and cell therapy. However, scalable culture of hPSCs is challenged by its need for maintenance of cell-cell contact, dissociation of which triggers the apoptotic pathway. Hence hPSCs are commonly maintained as colonies over Matrigel coated culture plates. Furthermore, use of xenogenic and undefined Matrigel compromises the translational potential of hPSCs. In this work we have developed a completely defined substrate to enable adherent culture of hPSCs as single cells. This substrate prevents apoptosis of the single cells and allows significant fold expansion of hPSCs while maintaining pluripotency and differentiation potential. The developed substrate is expected to be a cost-effective and translatable alternative to Matrigel.

摘要

人多能干细胞(hPSC)在满足再生医学的细胞需求方面具有巨大潜力,然而这些细胞需要在细胞集落中扩增以维持细胞间接触,从而限制了满足细胞治疗需求所需的可扩展性。虽然使用Rho相关蛋白激酶(ROCK)抑制剂可以实现单细胞hPSC的培养,但解离后通常只能回收50%的细胞。当hPSC通过E-钙黏蛋白失去细胞间接触时,解离诱导的细胞凋亡就会发生。在本研究中,我们假设hPSC的细胞外E-钙黏蛋白结构域将与水凝胶基质上呈现的合成E-钙黏蛋白肽结合,模拟所需的细胞间接触,从而保持单细胞活力和克隆形成能力。因此,本研究的目的是用模拟E-钙黏蛋白的合成肽对藻酸盐水凝胶进行功能化,并评估肽在促进细胞附着、活力、维持多能性和分化潜能方面的性能。我们观察到,与合成E-钙黏蛋白肽缀合的藻酸盐不仅以高活力支持初始细胞附着,还支持hPSC的增殖和高倍数扩增。在肽修饰基质上增殖的hPSC维持了hPSC特征性的多能性和分化潜能,表现为自发分化和定向分化。重要性声明:人多能干细胞(hPSC)在满足再生医学和细胞治疗的细胞需求方面具有巨大潜力。然而,hPSC的可扩展培养受到其对维持细胞间接触的需求的挑战,细胞间接触的解离会触发凋亡途径。因此,hPSC通常在基质胶包被的培养板上以集落形式维持。此外,使用异种来源且成分不明确的基质胶会损害hPSC的转化潜力。在这项工作中,我们开发了一种完全明确的基质,以使hPSC能够作为单细胞进行贴壁培养。这种基质可防止单细胞凋亡,并允许hPSC在维持多能性和分化潜能的同时进行显著的倍数扩增。预计所开发的基质将成为一种经济高效且可转化的替代基质胶的材料。

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