Hindriks G, Ijsseldijk M J, Sonnenberg A, Sixma J J, de Groot P G
Department of Haematology, University Hospital Utrecht, The Netherlands.
Blood. 1992 Feb 15;79(4):928-35.
The adhesion of platelets to purified laminin under flow conditions was investigated. Adhesion to laminin was strongly dependent on the presence of divalent cations. In the absence of cations platelet adhesion (8% coverage in 5 minutes) was maximal at a shear rate of 100/s and no adhesion could be detected at shear rates above 800/s. In the presence of 0.8 mmol/L Mg2+ and 2 mmol/L Ca2+ platelet adhesion reached its maximum (30% coverage) around 800/s. At 1,800/s platelets still adhered to purified laminin (coverage of 6%). Antibodies against the E8 domain of laminin and antibodies against the alpha 6 and beta 1 chains of platelet membrane glycoprotein very late activation antigen-6 (VLA-6), completely inhibited adhesion. No inhibition was found with antibodies against glycoprotein IIb:IIIa, against the alpha 2 chain of VLA-2, and against the alpha 5 chain of VLA-5. Fibronectin and von Willebrand factor were not involved in laminin-dependent adhesion. Anti-VLA-6 partly inhibited platelet adhesion to the extracellular matrix of endothelial cells at shear rates below 800/s. Preincubation of the matrices with antilaminin E8 antibodies did not influence the adhesion. These results show that purified laminin supports platelet adhesion and that the presence of VLA-6 is important for platelet adhesion under flow conditions. The protein in the matrix with which VLA-6 interacts is currently unknown.
研究了流动条件下血小板与纯化层粘连蛋白的黏附情况。血小板与层粘连蛋白的黏附强烈依赖于二价阳离子的存在。在无阳离子的情况下,血小板黏附(5分钟内覆盖率为8%)在剪切速率为100/s时达到最大值,在剪切速率高于800/s时未检测到黏附。在存在0.8 mmol/L Mg2+和2 mmol/L Ca2+的情况下,血小板黏附在800/s左右达到最大值(覆盖率为30%)。在1800/s时,血小板仍能黏附于纯化的层粘连蛋白(覆盖率为6%)。针对层粘连蛋白E8结构域的抗体以及针对血小板膜糖蛋白极晚期活化抗原-6(VLA-6)的α6和β1链的抗体,完全抑制了黏附。针对糖蛋白IIb:IIIa、VLA-2的α2链以及VLA-5的α5链的抗体未发现有抑制作用。纤连蛋白和血管性血友病因子不参与依赖层粘连蛋白的黏附。抗VLA-6在剪切速率低于800/s时部分抑制了血小板与内皮细胞细胞外基质的黏附。用抗层粘连蛋白E8抗体对基质进行预孵育不影响黏附。这些结果表明,纯化的层粘连蛋白支持血小板黏附,并且VLA-6的存在对于流动条件下的血小板黏附很重要。目前尚不清楚VLA-6相互作用的基质中的蛋白质是什么。