炎症
转移
内皮
血流动力学
肝细胞癌
下调和上调
癌症研究
细胞粘附
粘附
医学
循环系统
内皮细胞活化
内皮干细胞
血流
免疫学
趋化性
细胞
病理
癌症
原发性肿瘤
循环肿瘤细胞
心脏病学
血管
细胞粘附分子
癌
作者
Jia He,Peiyan Duan,Yi Liu,Feng Tang,Shuo Wang,Xinyi Lin,Jing Xie,Xiaoheng Liu
标识
DOI:10.1002/adhm.202304439
摘要
Abstract Hepatocellular carcinoma (HCC) hematogenous dissemination is a leading cause of HCC‐related deaths. The inflammatory facilitates this process by promoting the adhesion and invasion of tumor cells in the circulatory system. But the contribution of hemodynamics to this process remains poorly understood due to the lack of a suitable vascular flow model for investigation. This study develops a vascular flow model to examine the impact of hemodynamics on endothelial inflammation‐mediated HCC metastasis. This work finds the increasing shear stress will reduce the recruitment of HCC cells by disturbing adhesion forces between endothelium and HCC cells. However, this reduction will be restored by the inflammation. When applying high FSS (4–6 dyn cm −2 ) to the inflammatory endothelium, there will be a 4.8‐fold increase in HCC cell adhesions compared to normal condition. Nevertheless, the increase fold of cell adhesions is inapparent, around 1.5‐fold, with low and medium FSS. This effect can be attributed to the FSS‐induced upregulation of ICAM‐1 and VCAM‐1 of the inflammatory endothelium, which serve to strengthen cell binding forces. These findings indicate that hemodynamics plays a key role in HCC metastasis during endothelial inflammation by regulating the expression of adhesion‐related factors.
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