Passi Mehak, Zahler Stefan
Center for Drug Research, Ludwig-Maximilians-University, Butenandtstr. 5-13, 81377 Munich, Germany.
J Cancer. 2021 Sep 3;12(21):6411-6421. doi: 10.7150/jca.60102. eCollection 2021.
HCC is one of the leading causes of cancer related death worldwide and comprises about 90% of the cases of primary liver cancer. It is generally accompanied by chronic liver fibrosis characterised by deposition of collagen fibres, which, in turn, causes enhanced stiffness of the liver tissue. Changes of tissue stiffness give rise to alterations of signalling pathways that are associated to mechanical properties of the cells and the extracellular matrix, and that can be subsumed as "mechano-signaling pathways", like, e.g., the YAP/TAZ pathway, or the SRF pathway. Stiffness of the liver tissue modulates mechanical regulation of many genes involved in HCC progression. However, mechano-signaling is still rather underrepresented in our concepts of cancer in comparison to "classical" biochemical signalling pathways. This review aims to give an overview of various stiffness induced mechano-biological aspects of HCC.
肝癌是全球癌症相关死亡的主要原因之一,约占原发性肝癌病例的90%。它通常伴有以胶原纤维沉积为特征的慢性肝纤维化,进而导致肝组织硬度增加。组织硬度的变化会引起与细胞和细胞外基质机械特性相关的信号通路改变,这些通路可归为“机械信号通路”,例如YAP/TAZ通路或SRF通路。肝组织硬度调节许多参与肝癌进展的基因的机械调节。然而,与“经典”生化信号通路相比,机械信号在我们的癌症概念中仍然相当缺乏代表性。本综述旨在概述肝癌各种由硬度诱导的机械生物学方面。