Clinical Research Center, Medical and Health Science Center, University Debrecen, Hungary.
Thromb Res. 2012 Apr;129(4):e29-35. doi: 10.1016/j.thromres.2011.09.030. Epub 2011 Nov 5.
Von Willebrand factor (VWF) and platelet binding needs a uniform collagen matrix therefore we aimed to find an optimal condition for the preparation of human type-I and type-III collagen matrices.
The effects of pH, salt and ligand concentration and binding time were tested when collagen matrices were prepared by adsorption. Surface-bound collagen and collagen-bound VWF measured by specific antibodies. Platelet adhesion was tested under flow conditions at a shear rate of 1800s(-1) for 2 min. Matrices and platelets were visualized by atomic force and scanning electron microscope.
The extent of human collagens type-I and III binding to the surface was 10 and 4 times greater and binding was maximal under 8-16 hours, when coated from physiological buffer solution versus acid solution. Collagen fibrils were more developed and platelet adhesion was higher, with more organized and denser aggregates. VWF binding was parallel to the surface bound collagen in both collagen types.
Collagen coating of surfaces for VWF binding and platelet adhesion studies is very variable from acid solution. Our experiments provide evidences that neutralizing the acid and adding NaCl in physiological concentration, thereby facilitating formation of collagen fibril molecules in solution, results in efficient coating of human type-I and type III collagens, which then bind normal VWF equally well.
血管性血友病因子(VWF)和血小板结合需要一个均匀的胶原基质,因此我们旨在寻找一种最佳条件来制备人 I 型和 III 型胶原基质。
通过吸附法制备胶原基质时,测试了 pH 值、盐浓度和配体浓度以及结合时间的影响。通过特异性抗体测量表面结合的胶原和胶原结合的 VWF。在剪切速率为 1800s(-1)、持续 2 分钟的流动条件下测试血小板黏附。通过原子力和扫描电子显微镜观察基质和血小板。
人 I 型和 III 型胶原与表面的结合程度分别增加了 10 倍和 4 倍,当从生理缓冲溶液而不是酸性溶液中涂覆时,结合在 8-16 小时时达到最大。胶原纤维更发达,血小板黏附更高,聚集更有组织和更密集。VWF 结合与两种胶原的表面结合胶原平行。
用于 VWF 结合和血小板黏附研究的胶原涂层从酸性溶液中非常不稳定。我们的实验提供了证据,即中和酸性并在生理浓度下添加 NaCl,从而促进胶原纤维分子在溶液中的形成,导致人 I 型和 III 型胶原的有效涂层,然后同样能很好地结合正常的 VWF。