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The influence of the RGD peptide motif and its contextual presentation in PEG gels on human mesenchymal stem cell viability

机译:RGD肽基序及其在PEG凝胶中的背景表达对人间充质干细胞活力的影响

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An investigation was undertaken into the method of delivery of RGD peptide motifs to adult human mesenchymal stem cells (hMSCs) encapsulated in poly(ethylene glycol) (PEG) hydrogel systems. Previous studies have shown that the viability of hMSCs encapsulated in bio-inert hydrogels, such as PEG-based gels, decreases over time. hMSCs are an adhesive-dependent cell type, requiring attachment sites to maintain their survival and function. The incorporation of tethered RGD peptide motifs was found to sustain a high level of hMSC survival in PEG gels. However, previous reports are largely limited to pendantly tethered RGD in gels; therefore, further investigation into hMSCs' affinity for and response to the contextual presentation of RGD was studied using varying methods of RGD attachment to the PEG gel, as well as delivery of soluble RGD peptides. Studies with encapsulated hMSCs showed that the constrained RGD peptide, bound via two links to the PEG gel, promoted ~60% cell survival, while tethering the RGD as a pendant group, bound via a single link to the PEG gel, promoted ~80% cell survival. Interestingly, incorporating a glycine spacer arm to the RGD pendant tether further enhanced survival to ~88%. Investigations with solubly delivered peptides resulted in a dramatic decrease in cell viability with time, eventually leading to survival that was similar to that of unmodified PEG gels. Integrin staining for αvβ3 and α4, as well as focal adhesion staining, correlates to the trends in hMSC survival for covalently-bound RGD motifs and a loss of viability for the solubly delivered peptide systems.
机译:对将RGD肽基序传递到封装在聚乙二醇(PEG)水凝胶系统中的成年人类间充质干细胞(hMSC)的方法进行了研究。以前的研究表明,封装在生物惰性水凝胶(例如PEG基凝胶)中的hMSC的活力会随着时间而降低。 hMSC是一种黏附依赖性细胞类型,需要附着位点才能维持其存活和功能。发现束缚的RGD肽基序的掺入在PEG凝胶中维持高水平的hMSC存活。但是,以前的报道主要限于凝胶中的悬挂式RGD。因此,使用各种将RGD附着在PEG凝胶上的方法以及可溶性RGD肽的输送方法,研究了对hMSC对RGD上下文表达的亲和力和响应的进一步研究。用封装的hMSCs进行的研究表明,受约束的RGD肽通过两个链接与PEG凝胶结合,可提高〜60%的细胞存活率,而将RGD作为侧基束缚,通过单个链接与PEG凝胶结合,则可提升〜80%。细胞存活。有趣的是,将甘氨酸间隔臂结合到RGD侧链上可以进一步提高存活率,达到〜88%。用溶质递送的肽进行的研究导致细胞活力随时间急剧下降,最终导致存活率与未修饰的PEG凝胶相似。 αvβ3和α4的整联蛋白染色以及粘着斑染色与共价结合的RGD基序的hMSC存活趋势和可溶递送的肽系统的活力丧失相关。

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