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Biopolymer Hydrogel Scaffold as an Artificial Cell Niche for Mesenchymal Stem Cells

机译:生物聚合物水凝胶支架作为间充质干细胞的人造细胞Niche

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摘要

The activity of stem cell processes is regulated by internal and external signals of the cell “niche”. In general, the niche of stem cells can be represented as the microenvironment of the cells, providing a signal complex, determining the properties of the cells. At the same time, the “niche” concept implies feedback. Cells can modify their microenvironment, supporting homeostasis or remodeling the composition and structure of the extracellular matrix. To ensure the regenerative potential of tissue engineering products the “niche” concept should be taken into account. To investigate interactions in an experimental niche, an original hydrogel biopolymer scaffold with encapsulated mesenchymal adipose-derived stem cells (ASCs) was used in this study. The scaffold provides for cell adhesion, active cell growth, and proliferative activity. Cells cultured within a scaffold are distinguished by the presence of a developed cytoskeleton and they form a cellular network. ASCs cultured within a scaffold change their microenvironment by secreting VEGF-A and remodeling the scaffold structure. Scaffold biodegradation processes were evaluated after previous culturing of the ASCs in the scaffolds for periods of either 24 h or six days. The revealed differences confirmed that changes had occurred in the properties of scaffolds remodeled by cells during cultivation. The mechanisms of the identified changes and the possibility of considering the presented scaffold as an appropriate artificial niche for ASCs are discussed.
机译:干细胞过程的活性由细胞“Niche”的内部和外部信号调节。通常,干细胞的利基可以用作细胞的微环境,提供信号复合物,确定细胞的性质。与此同时,“利基”概念意味着反馈。细胞可以改变它们的微环境,支持稳态或重塑细胞外基质的组成和结构。为确保组织工程产品的再生潜力应考虑“利基”概念。为了研究实验性Niche中的相互作用,在本研究中使用原始水凝胶生物聚合物支架与包封的间充质肽衍生的干细胞(ASCS)。支架提供细胞粘附,活性细胞生长和增殖活性。在支架内培养的细胞通过发育的细胞骨架的存在而区分,并且它们形成细胞网络。通过分泌VEGF-A并改造支架结构,在支架内培养的ascs改变它们的微环境。在先前培养支架中的ASC培养24小时或六天后,评估支架生物降解方法。揭示的差异证实,在培养过程中通过细胞改造的支架的性质发生了变化。讨论了所识别的变化的机制以及将所提出的支架视为ASCS的适当人造利基的可能性。

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