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Extracellular Matrix Aggregates from Differentiating Embryoid Bodies as a Scaffold to Support ESC Proliferation and Differentiation

机译:来自分化的胚状体作为支架,支持ESC增殖和分化的细胞外基质聚集。

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摘要

Embryonic stem cells (ESCs) have emerged as potential cell sources for tissue engineering and regeneration owing to its virtually unlimited replicative capacity and the potential to differentiate into a variety of cell types. Current differentiation strategies primarily involve various growth factor/inducer/repressor concoctions with less emphasis on the substrate. Developing biomaterials to promote stem cell proliferation and differentiation could aid in the realization of this goal. Extracellular matrix (ECM) components are important physiological regulators, and can provide cues to direct ESC expansion and differentiation. ECM undergoes constant remodeling with surrounding cells to accommodate specific developmental event. In this study, using ESC derived aggregates called embryoid bodies (EB) as a model, we characterized the biological nature of ECM in EB after exposure to different treatments: spontaneously differentiated and retinoic acid treated (denoted as SPT and RA, respectively). Next, we extracted this treatment-specific ECM by detergent decellularization methods (Triton X-100, DOC and SDS are compared). The resulting EB ECM scaffolds were seeded with undifferentiated ESCs using a novel cell seeding strategy, and the behavior of ESCs was studied. Our results showed that the optimized protocol efficiently removes cells while retaining crucial ECM and biochemical components. Decellularized ECM from SPT EB gave rise to a more favorable microenvironment for promoting ESC attachment, proliferation, and early differentiation, compared to native EB and decellularized ECM from RA EB. These findings suggest that various treatment conditions allow the formulation of unique ESC-ECM derived scaffolds to enhance ESC bioactivities, including proliferation and differentiation for tissue regeneration applications. © 2013 Goh et al.
机译:胚胎干细胞(ESC)由于其几乎无限的复制能力和分化为多种细胞类型的潜力,已成为组织工程和再生的潜在细胞来源。当前的分化策略主要涉及各种生长因子/诱导剂/阻遏剂的混合,而对底物的重视较少。开发生物材料以促进干细胞增殖和分化可以帮助实现这一目标。细胞外基质(ECM)成分是重要的生理调节剂,可以为直接ESC扩增和分化提供线索。 ECM与周围细胞进行不断的重塑,以适应特定的发育事件。在这项研究中,以称为胚状体(EB)的ESC衍生聚集体为模型,我们对暴露于不同处理后的EB中ECM的生物学特性进行了表征:自发分化和视黄酸处理(分别表示为SPT和RA)。接下来,我们通过去污剂去细胞方法(与Triton X-100,DOC和SDS进行比较)提取了这种治疗专用的ECM。使用一种新型的细胞接种策略,将未分化的ESC接种到所得的EB ECM支架上,并研究了ESC的行为。我们的结果表明,优化的方案可有效去除细胞,同时保留关键的ECM和生化成分。与天然EB和RA EB的脱细胞ECM相比,SPT EB的脱细胞ECM产生了更有利的微环境,可促进ESC附着,增殖和早期分化。这些发现表明,各种治疗条件允许配制独特的ESC-ECM衍生支架来增强ESC的生物活性,包括用于组织再生应用的增殖和分化。 ©2013 Goh等人。

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    Goh SK; Olsen P; Banerjee I;

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