Center for Biomechanics and Bioengineering, Key Laboratory of Microgravity (National Microgravity Laboratory), and Beijing Key Laboratory of Engineered Construction and Mechanobiology, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China; School of Engineering Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Center for Biomechanics and Bioengineering, Key Laboratory of Microgravity (National Microgravity Laboratory), and Beijing Key Laboratory of Engineered Construction and Mechanobiology, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China.
Adv Drug Deliv Rev. 2022 Sep;188:114448. doi: 10.1016/j.addr.2022.114448. Epub 2022 Jul 9.
A growing body of multiscale biomechanical studies has been proposed to highlight the mechanical cues in the development of hepatic fibrosis and cancer. At the cellular level, changes in mechanical microenvironment induce phenotypic and functional alterations of hepatic cells, initiating a positive feedback loop that promotes liver fibrogenesis and hepatocarcinogenesis. Tumor mechanical microenvironment of hepatocellular carcinoma facilitates tumor cell growth and metastasis, and hinders the drug delivery and immunotherapy. At the molecular level, mechanical forces are sensed and transmitted into hepatic cells via allosteric activation of mechanoreceptors on the cell membrane, leading to the activation of various mechanotransduction pathways including integrin and YAP signaling and then regulating cell function. Thus, the application of mechanomedicine concept in the treatment of liver diseases is promising for rational design and cell-specific delivery of therapeutic drugs. This review mainly discusses the correlation between biomechanical cues and liver diseases from the viewpoint of mechanobiology.
越来越多的多尺度生物力学研究被提出来强调机械线索在肝纤维化和癌症发展中的作用。在细胞水平上,机械微环境的变化诱导肝细胞的表型和功能改变,启动一个正反馈环,促进肝纤维化和肝癌发生。肝癌的肿瘤力学微环境促进肿瘤细胞生长和转移,并阻碍药物输送和免疫治疗。在分子水平上,机械力通过细胞膜上机械感受器的变构激活被感知并传递到肝细胞内,导致各种机械转导途径的激活,包括整合素和 YAP 信号通路,从而调节细胞功能。因此,机械医学概念在肝脏疾病治疗中的应用有望实现治疗药物的合理设计和细胞特异性传递。这篇综述主要从力学生物学的角度讨论生物力学线索与肝脏疾病之间的相关性。