Department of Cell and Developmental Biology, Sackler School of Medicine, Tel Aviv University, Tel Aviv, Israel.
J Cell Physiol. 2019 Aug;234(8):12133-12141. doi: 10.1002/jcp.28099. Epub 2019 Jan 11.
Mechanobiology plays a major role in transducing physical cues from the dynamic cellular environment into biochemical modifications that promote cell-specific differentiation paths. Mesenchymal stem cells in the bone marrow or in other mesenchymal tissues will differentiate according to the expression of transcription factors (TFs) that govern their lineage commitment. The favoring of either osteogenic or adipogenic differentiation relies on TF expression as well as mechanical properties of the cells' niche that are translated into the activation of certain signaling pathways. Physical factors can induce significant shifts in bipotential lineage commitment between osteogenesis and adipogenesis. The stiffness of the extracellular matrix (ECM) surrounding a cell, varying greatly from rigid environments close to the bone surface to softer regions in the bone marrow, can influence the path of differentiation. Additionally, mechanical loading through exercise appears to favor osteogenesis whereas disuse conditions seem to promote adipogenesis.
力学生物学在将动态细胞环境中的物理线索转导为促进细胞特异性分化途径的生化修饰方面起着重要作用。骨髓或其他间充质组织中的间充质干细胞将根据转录因子(TFs)的表达分化,这些 TFs 控制它们的谱系承诺。成骨或成脂分化的偏向取决于 TF 的表达以及细胞生态位的力学特性,这些特性转化为某些信号通路的激活。物理因素可以在成骨和脂生成之间的双潜能谱系承诺中引起显著的转变。细胞周围细胞外基质(ECM)的刚度从靠近骨表面的刚性环境到骨髓中的较软区域变化很大,这会影响分化途径。此外,通过运动进行的机械加载似乎有利于成骨,而废用条件似乎有利于成脂。