Increasing matrix stiffness upregulates vascular endothelial growth factor expression in hepatocellular carcinoma cells mediated by integrin β1

血管生成 血管内皮生长因子 细胞外基质 癌症研究 川地31 蛋白激酶B 整合素 血管内皮生长因子A PI3K/AKT/mTOR通路 下调和上调 化学 信号转导 细胞生物学 生物 细胞 生物化学 血管内皮生长因子受体 基因
作者
Youhai Dong,Xiaoying Xie,Zhiming Wang,Chao Hu,Qin Zheng,Yaohui Wang,Rongxin Chen,Tong-Chun Xue,Jie Chen,Dongmei Gao,Wei–Zhong Wu,Zhenggang Ren,Jiefeng Cui
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier]
卷期号:444 (3): 427-432 被引量:83
标识
DOI:10.1016/j.bbrc.2014.01.079
摘要

Matrix stiffness as a novel regulation factor involves in modulating the pathogenesis of hepatocellular carcinoma (HCC) invasion or metastasis. However, the mechanism by which matrix stiffness modulates HCC angiogenesis remains unknown. Here, using buffalo rat HCC models with different liver matrix stiffness backgrounds and an in vitro cell culture system of mechanically tunable Collagen1 (COL1)-coated polyacrylamide gel, we investigated the effects of different matrix stiffness levels on vascular endothelial growth factor (VEGF) expression in HCC cells and explored its regulatory mechanism for controlling HCC angiogenesis. Tissue microarray analysis showed that the expression levels of VEGF and CD31 were gradually upregulated in tumor tissues with increasing COL1 and lysyl oxidase (LOX) expression, indicating a positive correlation between tumor angiogenesis and matrix rigidity. The expression of VEGF and the phosphorylation levels of PI3K and Akt were all upregulated in HCC cells on high-stiffness gel than on low-stiffness gel. Meanwhile, alteration of intergrin β1 expression was found to be the most distinctive, implying that it might mediate the response of HCC cells to matrix stiffness simulation. After integrin β1 was blocked in HCC cells using specific monoclonal antibody, the expression of VEGF and the phosphorylation levels of PI3K and Akt at different culture times were accordingly suppressed and downregulated in the treatment group as compared with those in the control group. All data suggested that the extracellular matrix stiffness stimulation signal was transduced into HCC cells via integrin β1, and this signal activated the PI3K/Akt pathway and upregulated VEGF expression. This study unveils a new paradigm in which matrix stiffness as initiators to modulate HCC angiogenesis.
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