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细胞分化的“机械调节器”原则。骨软骨前体细胞范例。

The "mechanostat" principle in cell differentiation. The osteochondroprogenitor paradigm.

机构信息

National and Kapodistrian University of Athens, Athens, Greece.

出版信息

J Cell Biochem. 2019 Jan;120(1):37-44. doi: 10.1002/jcb.27509. Epub 2018 Aug 24.

Abstract

The "mechanostat" principle may be depicted as an oscillating signal of a signaling molecule, in which the amplitude, frequency, cumulative level, delay, and duration of the curve encode the information for concrete cellular responses and biological activities. When the oscillating signal is kept sustained (present delay), cell exit may be performed, whereas when the oscillating signal remains robust, cell proliferation may take place. B-catenin-Wnt signaling pathway has a key role in the differentiation of osteochondroprogenitor cells. Sustained downregulation of the β-catenin-Wnt pathway forces osteochondroprogenitors to a chondrogenic fate instead of an osteoblastic one. Other signaling, for example, bone morphogenetic protein and Notch signaling pathways interact with the Wnt pathway. The crosstalk between biochemical and mechanical stimuli produces the final information that leads to the final cell fate decisions, through the "mechanostat" principle.

摘要

“机械调节器”原则可以被描绘为信号分子的振荡信号,其中信号的幅度、频率、累积水平、延迟和持续时间为具体的细胞反应和生物活性编码信息。当振荡信号持续存在(存在延迟)时,细胞可能会退出,而当振荡信号保持稳健时,细胞可能会增殖。β-连环蛋白-Wnt 信号通路在成骨软骨祖细胞的分化中具有关键作用。β-连环蛋白-Wnt 通路的持续下调迫使成骨软骨祖细胞向软骨命运而不是成骨命运分化。其他信号通路,如骨形态发生蛋白和 Notch 信号通路,与 Wnt 通路相互作用。通过“机械调节器”原则,生化和机械刺激之间的串扰产生最终信息,从而导致最终的细胞命运决定。

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