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Designing well-defined photopolymerized synthetic matrices for three-dimensional culture and differentiation of induced pluripotent stem cells

机译:设计良好定义的光聚合合成基质,用于三维培养和诱导多能干细胞的分化

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Induced pluripotent stem cells (iPSCs) are of interest for the study of disease, where these cells can be derived from patients and have the potential to be differentiated into any cell type; however, three-dimensional (3D) culture and differentiation of iPSCs within well-defined synthetic matrices for these applications remains limited. Here, we aimed to establish synthetic cell-degradable hydrogels that allow precise presentation of specific biochemical cues for 3D culture of iPSCs with relevance for hypothesis testing and lineage-specific differentiation. We synthesized poly(ethylene glycol)-(PEG)-peptide-based hydrogels by photoinitiated step growth polymerization and used them to test the hypothesis that the viability of iPSCs within these matrices could be rescued with appropriate biochemical cues inspired by proteins and integrins important for iPSC culture on Matrigel. Specifically, we selected a range of motifs inspired by iPSC binding to Matrigel, including laminin-derived IKVAV and YIGSR, alpha(5)beta(1)-binding PHSRNG(10)RGDS, alpha(v)beta(5)-binding KKQRFRHRNRKG, and RGDS that is known to bind a variety of integrins for generally promoting cell adhesion. YIGSR and PHSRNG(10)RGDS resulted in the highest iPSC viability, where binding of beta(1) integrin was key, and these permissive compositions also allowed iPSC differentiation into neural progenitor cells (NPCs) (decreased oct4 expression and increased pax6 expression) in response to soluble factors. The resulting NPCs formed clusters of different sizes in response to each peptide, suggesting that matrix biochemical cues affect iPSC proliferation and clustering in 3D culture. In summary, we have established photopolymerizable synthetic matrices for the encapsulation, culture, and differentiation of iPSCs for studies of cell-matrix interactions and deployment in disease models.
机译:诱导多能干细胞(IPSC)对疾病的研究感兴趣,其中这些细胞可以衍生自患者,并且有可能与任何细胞类型分化;然而,在这些应用的明确明确的合成矩阵内的三维(3D)培养和IPSC的分化仍然有限。在这里,我们旨在建立合成细胞可降解水凝胶,允许精确呈现IPSC的3D培养的特定生化线索,具有假设检测和谱系特异性分化的相关性。通过光灭绝的步骤生长聚合合成聚(乙二醇) - (PEG) - 肽基水凝胶,并用它们来测试这些基质中IPSC在这些基质中的活力可以用蛋白质和整体素的适当的生化线索来救出的假设Matrigel上的IPSC文化。具体地,我们选择了一系列由IPSC结合的IPSC与Matrigel的系列,包括层蛋白衍生的IKVAV和YIGSR,α(5)β(1) - 粘合PHSRNG(10)RGDS,α(v)β(5) - 缠绕kkqrfrhrnrkg并且已知结合各种整合蛋白的RGDS以用于通常促进细胞粘附。 YIGSR和PHSRNG(10)RGD导致最高的IPSC活力,其中β(1)整联蛋白的结合是关键,并且这些允许组合物也使IPSC分化为神经祖细胞(NPC)(减少OCT4表达和增加的PAX6表达)响应可溶性因子。由此产生的NPC为响应于每种肽而形成不同尺寸的簇,表明基质生物化学提示影响3D培养中的IPSC增殖和聚类。总之,我们已经建立了IPSCS的封装,培养和分化的可光聚合的合成基质,以研究细胞 - 基质相互作用和疾病模型中的部署。

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