Department of Mechanical and Aerospace Engineering, Herbert Wertheim College of Engineering, University of Florida, Gainesville, FL 32611, USA.
UF Health Cancer Center, University of Florida, Gainesville, FL 32610, USA.
Int J Mol Sci. 2023 Aug 6;24(15):12491. doi: 10.3390/ijms241512491.
Biomechanical forces are of fundamental importance in biology, diseases, and medicine. Mechanobiology is an emerging interdisciplinary field that studies how biological mechanisms are regulated by biomechanical forces and how physical principles can be leveraged to innovate new therapeutic strategies. This article reviews state-of-the-art mechanobiology knowledge about the yes-associated protein (YAP), a key mechanosensitive protein, and its roles in the development of drug resistance in human cancer. Specifically, the article discusses three topics: how YAP is mechanically regulated in living cells; the molecular mechanobiology mechanisms by which YAP, along with other functional pathways, influences drug resistance of cancer cells (particularly lung cancer cells); and finally, how the mechanical regulation of YAP can influence drug resistance and vice versa. By integrating these topics, we present a unified framework that has the potential to bring theoretical insights into the design of novel mechanomedicines and advance next-generation cancer therapies to suppress tumor progression and metastasis.
生物力学在生物学、疾病和医学中具有重要意义。机械生物学是一个新兴的跨学科领域,研究生物机制如何受到生物力学的调节,以及物理原理如何被利用来创新新的治疗策略。本文综述了关于 yes 相关蛋白 (YAP) 的最新机械生物学知识,YAP 是一种关键的机械敏感蛋白,及其在人类癌症耐药性发展中的作用。具体而言,本文讨论了三个主题:YAP 在活细胞中如何受到机械调节;YAP 与其他功能途径一起影响癌细胞(特别是肺癌细胞)耐药性的分子机械生物学机制;以及 YAP 的机械调节如何影响耐药性,反之亦然。通过整合这些主题,我们提出了一个统一的框架,有可能为设计新型机械医学带来理论见解,并推进下一代癌症治疗方法,以抑制肿瘤的进展和转移。