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Bi-directional cell-pericellular matrix interactions direct stem cell fate

机译:双向细胞-细胞周围基质相互作用直接影响干细胞命运

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摘要

Modifiable hydrogels have revealed tremendous insight into how physical characteristics of cells’ 3D environment drive stem cell lineage specification. However, in native tissues, cells do not passively receive signals from their niche. Instead they actively probe and modify their pericellular space to suit their needs, yet the dynamics of cells’ reciprocal interactions with their pericellular environment when encapsulated within hydrogels remains relatively unexplored. Here, we show that human bone marrow stromal cells (hMSC) encapsulated within hyaluronic acid-based hydrogels modify their surroundings by synthesizing, secreting and arranging proteins pericellularly or by degrading the hydrogel. hMSC’s interactions with this local environment have a role in regulating hMSC fate, with a secreted proteinaceous pericellular matrix associated with adipogenesis, and degradation with osteogenesis. Our observations suggest that hMSC participate in a bi-directional interplay between the properties of their 3D milieu and their own secreted pericellular matrix, and that this combination of interactions drives fate.
机译:可修改的水凝胶揭示了对细胞3D环境的物理特征如何驱动干细胞谱系规范的深刻见解。但是,在天然组织中,细胞不会被动地从其利基接收信号。取而代之的是,它们积极地探测和修改细胞周围的空间以适应他们的需求,但是当细胞被包裹在水凝胶中时,细胞与细胞周围环境的交互作用的动力学仍然相对未被探索。在这里,我们表明封装在透明质酸基水凝胶中的人类骨髓基质细胞(hMSC)通过在细胞周围合成,分泌和排列蛋白质或降解水凝胶来修饰其周围环境。 hMSC与这一局部环境的相互作用在调节hMSC命运方面起着一定的作用,其分泌的蛋白质周围细胞基质与脂肪形成有关,并随着成骨作用而降解。我们的观察结果表明,hMSC参与了其3D环境与自身分泌的细胞周围基质之间的双向相互作用,并且这种相互作用的组合决定了命运。

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