维生素连接蛋白
血小板
脐静脉
纤维连接蛋白
整合素
血小板粘附
化学
细胞粘附
血栓反应蛋白
癌症研究
细胞生物学
生物
免疫学
细胞
细胞外基质
体外
生物化学
血栓反应素
酶
血小板聚集
金属蛋白酶
作者
Karen Lawler,Gerardene Meade,Gerald C. O’Sullivan,Dermot Kenny
出处
期刊:American Journal of Physiology-cell Physiology
[American Physical Society]
日期:2004-07-08
卷期号:287 (5): C1320-C1327
被引量:29
标识
DOI:10.1152/ajpcell.00159.2004
摘要
Interaction of tumor cells with the vascular wall is required for metastasis from the bloodstream. The precise interaction among metastatic cells, circulating platelets, the vessel wall, and physiological flow conditions remains to be determined. In this study, we investigated the interaction of shear on metastatic cell lines adherent to lipopolysaccharide (LPS)-treated endothelium. Tumor cells were perfused over LPS-treated human umbilical vein endothelial cells (HUVECs) at incremental venous shear rates from 50 to 800 s(-1). At a venous shear rate of 400 s(-1), 3% of adherent tumor cells formed pseudopodia under shear, a process we termed shear-induced activation. Because platelets promote tumor dissemination, we then investigated the effect of pretreating tumor cells with platelet releasate collected from activated platelet concentrate. We found that in the presence of platelet releasate, the number of tumor cells adhering to HUVECs increased and tumor "activation" occurred at a significantly lower shear rate of 50 s(-1). This was inhibited with acetylsalicylic acid. Depletion of fibronectin or vitronectin from the platelet releasate resulted in significantly less adhesion at higher venous shear rates of 600 and 800 s(-1). The integrin alphavbeta3 has been shown to mediate cell adhesion primarily through vitronectin and fibronectin proteins. Inhibition of alphavbeta3, followed by the addition of platelet releasate to the tumor cells, resulted in significantly less adhesion at higher venous shear rates of 600 and 800 s(-1). Collectively, our data suggest that alphavbeta3 promotes the metastatic phenotype of tumor cells through interactions with the secreted platelet proteins vitronectin and fibronectin under venous shear conditions.
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