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细胞骨架预应力:力学生物学和力学生物医学中的细胞特征。

Cytoskeletal prestress: The cellular hallmark in mechanobiology and mechanomedicine.

作者信息

Chowdhury Farhan, Huang Bo, Wang Ning

机构信息

Department of Mechanical Engineering and Energy Processes, Southern Illinois University Carbondale, Carbondale, Illinois, USA.

Department of Immunology, Institute of Basic Medical Sciences & State Key Laboratory of Medical Molecular Biology, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

出版信息

Cytoskeleton (Hoboken). 2021 Jun;78(6):249-276. doi: 10.1002/cm.21658. Epub 2021 May 1.

Abstract

Increasing evidence demonstrates that mechanical forces, in addition to soluble molecules, impact cell and tissue functions in physiology and diseases. How living cells integrate mechanical signals to perform appropriate biological functions is an area of intense investigation. Here, we review the evidence of the central role of cytoskeletal prestress in mechanotransduction and mechanobiology. Elevating cytoskeletal prestress increases cell stiffness and reinforces cell stiffening, facilitates long-range cytoplasmic mechanotransduction via integrins, enables direct chromatin stretching and rapid gene expression, spurs embryonic development and stem cell differentiation, and boosts immune cell activation and killing of tumor cells whereas lowering cytoskeletal prestress maintains embryonic stem cell pluripotency, promotes tumorigenesis and metastasis of stem cell-like malignant tumor-repopulating cells, and elevates drug delivery efficiency of soft-tumor-cell-derived microparticles. The overwhelming evidence suggests that the cytoskeletal prestress is the governing principle and the cellular hallmark in mechanobiology. The application of mechanobiology to medicine (mechanomedicine) is rapidly emerging and may help advance human health and improve diagnostics, treatment, and therapeutics of diseases.

摘要

越来越多的证据表明,除了可溶性分子外,机械力在生理和疾病中也会影响细胞和组织功能。活细胞如何整合机械信号以执行适当的生物学功能是一个深入研究的领域。在这里,我们综述了细胞骨架预应力在机械转导和力学生物学中核心作用的证据。提高细胞骨架预应力会增加细胞硬度并加强细胞硬化,通过整合素促进远程细胞质机械转导,实现直接染色质拉伸和快速基因表达,刺激胚胎发育和干细胞分化,并增强免疫细胞激活和对肿瘤细胞的杀伤,而降低细胞骨架预应力则维持胚胎干细胞多能性,促进干细胞样恶性肿瘤再增殖细胞的肿瘤发生和转移,并提高软肿瘤细胞衍生微粒的药物递送效率。压倒性的证据表明,细胞骨架预应力是力学生物学的主导原则和细胞标志。力学生物学在医学上的应用(机械医学)正在迅速兴起,可能有助于促进人类健康并改善疾病的诊断、治疗和疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/800a/8518377/43f45925c0dc/CM-78-249-g001.jpg

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