Cucurbitacin B inhibits the migration and invasion of breast cancer cells by altering the biomechanical properties of cells
Jing Liang, Xiao-Lan Zhang, Jin-Wei Yuan, Hao-Ran Zhang, Dan Liu, Jian Hao, Wei Ji, Xiong-Zhi Wu, Dan Chen
Journal:PHYTOTHERAPY RESEARCH
IF:3.35
DOI:10.1002/ptr.6250
PMID:30548720
Published:2018-12-12
research field:肿瘤学药理学细胞生物学
Abstract
Changes in cellular biomechanical properties affect cell migration and invasion. The natural compound Cucurbitacin B (CuB) has potent anticancer activity; however, the mechanism underlying its inhibitory effect on breast cancer metastasis needs further study. Here, we showed that low-dose CuB inhibited adhesion and altered the viscoelasticity of breast cancer cells, thereby, reducing cell deformability. In vitro and in vivo experiments proved that CuB effectively inhibited the migration and invasion of breast cancer cells. Further studies have found that CuB downregulated the expression of F-actin/vimentin/FAK/vinculin in breast cancer cells, altering the distribution and reorganization of cytoskeletal proteins in the cells. CuB inhibited signaling by the Rho family GTPases RAC1/CDC42/RhoA downstream of integrin. These findings indicate that CuB has been proven to mediate the reorganization and distribution of cytoskeletal proteins of breast cancer cells through RAC1/CDC42/RhoA signaling, which improves the mechanical properties of cell adhesion and deformation and consequently inhibits cell migration and invasion.
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