整合素结合短肽合成底物诱导多能干细胞衍生前肠内胚层。

Shujun Wu, Huan Wang, Yanbei Ren, Ying Liu, Xuejun Wen
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引用次数: 0

摘要

诱导多能干细胞(iPSCs)衍生的前肠内胚层(AFE)是干细胞技术中重要的细胞来源,可衍生出肺祖细胞、甲状腺细胞等重要细胞系。涂层基材在AFE的产生中起着关键作用。目前,传统的大分子蛋白质如Matrigel被用于大多数分化方案。然而,这些涂层的复杂成分和机制限制了细胞- ecm相互作用的探索和潜在的临床应用。在这项研究中,我们鉴定了8种纯合成整合素结合短肽作为iPSC生长和AFE生成的有效涂层,并使用整合素结合肽阵列。结果表明,整合素α5β1、αVβ8和α iib β3结合肽支持iPSCs的粘附、扩增和AFE的生成,并以全锚定依赖的方式通过终型内胚层引导分化,并且在DE诱导阶段,基于整合素α3β1、α6β1、αVβ1、αVβ6、α m β2结合肽的涂层上也发现了AFE的生成。与全锚定依赖性肽组和Matrigel相比,AFE生成效率较低。综上所示,整合素α5β1结合肽与传统的Matrigel涂层在支持iPSC向AFE扩展和分化方面具有相当的效率,是最有希望诱导AFE的确定底物。此外,其他7种基于肽的涂层也显示出潜力,可以在未来的研究中进一步研究开发涉及AFE的合成涂层策略。我们的研究结果为整合素和ECM功能的作用提供了有价值的见解,并且在AFE起源器官的疾病建模和治疗探索方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generation of induced pluripotent stem cell-derived anterior foregut endoderms on integrin-binding short peptide-based synthetic substrates.

Anterior foregut endoderms (AFEs) derived from induced pluripotent stem cells (iPSCs) are an important cell source in stem cell technology as they give rise to some important lineages like lung progenitors and thyroid cells. Coating substrates plays a critical role in AFE generation. Currently, conventional large molecule proteins like Matrigel are used in most differentiation protocols. However, the complex components and mechanisms of these coatings have limited both the exploration of cell-extracellular matrix (ECM) interaction and potential clinical applications. In this study, we identified eight pure synthetic integrin-binding short peptides as effective coatings for iPSC growth and AFE generation with an integrin-binding peptide array. Our results showed that integrinα5β1-,αVβ8-, andαIIbβ3-binding peptides supported the adhesion and expansion of iPSCs and AFE generation by guided differentiation via a definitive endoderm (DE) in a full-anchorage-dependent manner. AFE generation was also found on coatings based on integrinα3β1-,α6β1-,αVβ1-,αVβ6-, andαMβ2-binding peptides following a process with temporal suspension growth in the DE-inducing stage, with lower AFE generation efficiency compared to the full-anchorage-dependent peptide groups and Matrigel. According to the results, the integrinα5β1-binding peptide is the most promising defined substrate for inducing AFEs because of its equivalent efficiency with traditional Matrigel coating in supporting iPSC expansion and differentiation toward AFEs. Additionally, the other seven peptide-based coatings also exhibit potential and could be further investigated for developing synthetic-coating strategies in future studies involving AFEs. Our findings provide valuable insights into the role of integrin and ECM function and hold great potential for disease modeling as well as therapeutic exploration of AFE origin organs.

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