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去细胞脂肪组织源性干细胞的再细胞化:细胞分泌的细胞外基质在细胞分化中的作用。

Recellularization of decellularized adipose tissue-derived stem cells: role of the cell-secreted extracellular matrix in cellular differentiation.

机构信息

School of Materials Science and Engineering, Nanyang Technological University, Singapore.

出版信息

Biomater Sci. 2017 Dec 19;6(1):168-178. doi: 10.1039/c7bm00695k.

Abstract

Adipose-derived stem cells (ASCs) are found in a location within the adipose tissue known as the stem cell niche. The ASCs in the niche are maintained in the quiescent state, and upon exposure to various microenvironmental triggers are prompted to undergo proliferation or differentiation. These microenvironmental triggers also modulate the extracellular matrix (ECM), which interacts with the cells through the cytoskeleton and induces downstream events inside the cells that bring about a change in cell behaviour. In response to these changes, the cells remodel the ECM, which will differ according to the type of tissue being formed by the cells. As the ECM itself plays an important role in the regulation of cellular differentiation, this study aims to explore the role of the cell-secreted ECM at various stages of differentiation of stem cells in triggering the differentiation of ASCs. To this end, the ASCs cultured in proliferation, osteogenic and adipogenic media were decellularized and the secreted ECM was characterized. Overall, it was found that osteo-differentiated ASCs produced higher amounts of collagen and glycosaminoglycans (GAG) compared to the undifferentiated and adipo-differentiated ASCs. The two types of differentiated ECMs were subsequently shown to trigger initial but not terminal differentiation of ASCs into osteo- and adipo-lineages respectively, as indicated by the upregulation of lineage specific markers. In addition, integrin subunits alpha (α) 6 and integrin beta (β) 1 were found to be produced by ASCs cultured on cell-secreted ECM-coated substrates, suggesting that the integrins α6 and β1 play an instrumental role in cell-ECM interactions. Taken together, this study demonstrates the importance of the ECM in cellular fate decisions and how ECM-coated substrates can potentially be used for various tissue engineering applications.

摘要

脂肪来源干细胞 (ASCs) 存在于脂肪组织中一个被称为干细胞龛的位置。龛中的 ASC 处于静止状态,当暴露于各种微环境触发因素时,会被促使增殖或分化。这些微环境触发因素还调节细胞外基质 (ECM),ECM 通过细胞骨架与细胞相互作用,并在细胞内引发下游事件,导致细胞行为发生变化。细胞对这些变化作出反应,重塑 ECM,其根据细胞形成的组织类型而有所不同。由于 ECM 本身在细胞分化的调节中起着重要作用,因此本研究旨在探索细胞分泌的 ECM 在干细胞分化的各个阶段在触发 ASC 分化中的作用。为此,在增殖、成骨和成脂培养基中培养的 ASC 被去细胞化,并对分泌的 ECM 进行了表征。总的来说,与未分化和脂肪分化的 ASC 相比,成骨分化的 ASC 产生了更多的胶原蛋白和糖胺聚糖 (GAG)。随后显示这两种分化的 ECM 分别触发了 ASC 向成骨和成脂谱系的初始但非终末分化,这表明谱系特异性标志物的上调。此外,在细胞分泌的 ECM 涂层底物上培养的 ASC 产生了整合素亚基α (α) 6 和整合素β (β) 1,这表明整合素α6 和β1 在细胞-ECM 相互作用中起着重要作用。总之,本研究表明 ECM 在细胞命运决定中的重要性,以及 ECM 涂层底物如何可用于各种组织工程应用。

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