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生理流动条件下人类肿瘤细胞在血管内皮上的滚动与黏附

Rolling and adhesion of human tumor cells on vascular endothelium under physiological flow conditions.

作者信息

Giavazzi R, Foppolo M, Dossi R, Remuzzi A

机构信息

Mario Negri Institute for Pharmacological Research, Bergamo, Italy.

出版信息

J Clin Invest. 1993 Dec;92(6):3038-44. doi: 10.1172/JCI116928.

Abstract

We investigated the interaction of different human tumor types with resting and IL-1-activated human umbilical vein endothelial cells under laminar flow conditions using a parallel plate flow chamber. Three tumor cell lines (the HT-29M colon carcinoma, the OVCAR-3 ovarian carcinoma, and the T-47D breast carcinoma) showed limited adhesion to unstimulated endothelial cells at any of the shear stress levels tested, while rolling and massive adhesion of tumor cells were observed on IL-1-activated endothelial cells. Three other tumor cell lines (the A375M and A2058 melanomas and the MG-63 osteosarcoma) did not adhere on resting endothelial cells at high shear stress (> 1.5 dyn/cm2) and started to adhere with decreasing shear stress; the number of adherent cells increased steeply on IL-1-activated endothelial cells, but no cell rolling was observed even at the highest shear stress. These mechanisms of tumor cell interaction with endothelial cells were analyzed in detail using the HT-29M colon carcinoma and the A375M melanoma. Incubation of activated endothelial cells with a monoclonal antibody against E-selectin inhibited rolling and adhesion of HT-29M, but had no effect on the adhesion of A375M cells; monoclonal antibody against vascular cell adhesion molecule-1 reduced the adhesion of A375M cells and had no effect on HT-29M. The selective interaction of these two molecules with tumor cells was confirmed by measuring the adhesion of tumor cells on immobilized soluble proteins. On E-selectin-coated surfaces, HT-29M cells rolled during perfusion experiments without subsequent adhesion, while A375M cells did not adhere. On vascular cell adhesion molecule-1-coated surfaces, HT-29M cells neither adhered nor rolled, while A375M cells adhered massively without rolling. Under flow conditions, therefore, cells from different tumor types interact with the endothelial surface by different mechanisms, depending on adhesion molecules expressed on the tumor and endothelial cell surface.

摘要

我们使用平行板流动腔在层流条件下研究了不同人类肿瘤类型与静息及白细胞介素-1激活的人脐静脉内皮细胞之间的相互作用。三种肿瘤细胞系(HT-29M结肠癌细胞、OVCAR-3卵巢癌细胞和T-47D乳腺癌细胞)在任何测试的剪切应力水平下对未刺激的内皮细胞的黏附都有限,而在白细胞介素-1激活的内皮细胞上观察到肿瘤细胞的滚动和大量黏附。另外三种肿瘤细胞系(A375M和A2058黑色素瘤细胞以及MG-63骨肉瘤细胞)在高剪切应力(>1.5达因/平方厘米)下不黏附于静息内皮细胞,且随着剪切应力降低开始黏附;在白细胞介素-1激活的内皮细胞上黏附细胞数量急剧增加,但即使在最高剪切应力下也未观察到细胞滚动。使用HT-29M结肠癌细胞和A375M黑色素瘤细胞详细分析了肿瘤细胞与内皮细胞相互作用的这些机制。用抗E-选择素单克隆抗体孵育激活的内皮细胞可抑制HT-29M细胞的滚动和黏附,但对A375M细胞的黏附无影响;抗血管细胞黏附分子-1单克隆抗体可降低A375M细胞的黏附,对HT-29M细胞无影响。通过测量肿瘤细胞在固定化可溶性蛋白上的黏附,证实了这两种分子与肿瘤细胞的选择性相互作用。在包被E-选择素的表面上,HT-29M细胞在灌注实验期间滚动但随后未黏附,而A375M细胞未黏附。在包被血管细胞黏附分子-1的表面上,HT-29M细胞既不黏附也不滚动,而A375M细胞大量黏附且不滚动。因此,在流动条件下来自不同肿瘤类型的细胞通过不同机制与内皮表面相互作用,这取决于肿瘤和内皮细胞表面表达的黏附分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec77/288509/bc6471a31cf2/jcinvest00044-0488-a.jpg

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