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Extracellular Matrix and Cellular Plasticity in Musculoskeletal Development

机译:肌肉骨骼发育中的细胞外基质和细胞塑性

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Cellular plasticity refers to the ability of cell fates to be reprogrammed given the proper signals, allowing for dedifferentiation or transdifferentiation into different cell fates. In vitro, this can be induced through direct activation of gene expression, however this process does not naturally occur in vivo. Instead, the microenvironment consisting of the extracellular matrix (ECM) and signaling factors, directs the signals presented to cells. Often the extracellular matrix is involved in regulating both biochemical and mechanical signals. In stem cell populations, this niche is necessary for maintenance and proper function of the stem cell pool. However, recent studies have demonstrated that differentiated or lineage restricted cells can exit their current state and transform into another state under different situations during development and regeneration. This may be achieved through 1) cells responding to a changing niche; 2) cells migrating and encountering a new niche; and 3) formation of a transitional niche followed by restoration of the homeostatic niche to sequentially guide cells along the regenerative process. This review focuses on examples in musculoskeletal biology, with concept of ECM regulating cells and stem cells in development and regeneration, extending beyond the conventional concept of small population of progenitor cells, but under the right circumstances even “lineage-restricted” or differentiated cells can be reprogrammed to enter into a different fate.
机译:细胞塑性是指细胞序列被重新编程的能力给予适当的信号,从而允许去分化或转移到不同的细胞率。体外,这可以通过直接激活基因表达来诱导,但是该方法在体内并不是天然存在。相反,由细胞外基质(ECM)和信号传导因子组成的微环境引导呈现给细胞的信号。通常,细胞外基质涉及调节生物化学和机械信号。在干细胞群中,该利基对于干细胞库的维护和适当功能是必要的。然而,最近的研究表明,差异化或谱系限制细胞可以在开发和再生期间在不同情况下在不同情况下转化为另一个状态。这可以通过1)细胞来响应变化的利基; 2)迁移和遇到新的利基的细胞; 3)形成过渡性水平,然后恢复稳态骨库沿着再生过程顺序引导细胞。本综述侧重于肌肉骨骼生物学中的实例,具有ECM调节细胞和干细胞的概念,在开发和再生中,延伸超出祖细胞的常规概念,但在适当的情况下甚至“谱系限制”或分化细胞也可以重新编程以进入不同的命运。

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