Wang Shuwu, Gupta Anirban Sen, Sagnella Sharon, Barendt Pamela M, Kottke-Marchant Kandice, Marchant Roger E
NanoMimetics, Inc., 1768 E. 25th Street, Cleveland, OH 44114, USA.
J Biomater Sci Polym Ed. 2009;20(5-6):619-35. doi: 10.1163/156856209X426439.
We describe a series of fluorocarbon surfactant polymers designed as surface-modifying agents for improving the thrombogenicity of ePTFE vascular graft materials by the reduction of platelet adhesion. The surfactant polymers consist of a poly(vinyl amine) backbone with pendent dextran and perfluoroundecanoyl branches. Surface modification is accomplished by a simple dip-coating process in which surfactant polymers undergo spontaneous surface-induced adsorption and assembly on PTFE/ePTFE surface. The adhesion stability of the surfactant polymer on PTFE was examined under dynamic shear conditions in PBS and human whole blood with a rotating disk system. Fluorocarbon surfactant polymer coatings with three different dextran to perfluorocarbon ratios (1:0.5, 1:1 and 1:2) were compared in the context of platelet adhesion on PTFE/ePTFE surface under dynamic flow conditions. Suppression of platelet adhesion was achieved for all three coated surfaces over the shear-stress range of 0-75 dyn/cm2 in platelet-rich plasma (PRP) or human whole blood. The effectiveness depended on the surfactant polymer composition such that platelet adhesion on coated surfaces decreased significantly with increasing fluorocarbon branch density at 0 dyn/cm2. Our results suggest that fluorocarbon surfactant polymers can effectively suppress platelet adhesion and demonstrate the potential application of the fluorocarbon surfactant polymers as non-thrombogenic coatings for ePTFE vascular grafts.
我们描述了一系列碳氟表面活性剂聚合物,这些聚合物被设计为表面改性剂,旨在通过减少血小板粘附来改善ePTFE血管移植材料的血栓形成性。表面活性剂聚合物由带有侧链葡聚糖和全氟十一烷酰支链的聚乙烯胺主链组成。表面改性通过简单的浸涂工艺完成,在该过程中,表面活性剂聚合物在PTFE/ePTFE表面发生自发的表面诱导吸附和组装。使用旋转圆盘系统在PBS和人全血的动态剪切条件下检测表面活性剂聚合物在PTFE上的粘附稳定性。在动态流动条件下,比较了三种不同葡聚糖与全氟碳比例(1:0.5、1:1和1:2)的碳氟表面活性剂聚合物涂层在PTFE/ePTFE表面上的血小板粘附情况。在富含血小板血浆(PRP)或人全血中,在0-75 dyn/cm2的剪切应力范围内,所有三种涂层表面均实现了血小板粘附的抑制。其有效性取决于表面活性剂聚合物的组成,使得在0 dyn/cm2时,随着碳氟支链密度的增加,涂层表面上的血小板粘附显著降低。我们的结果表明,碳氟表面活性剂聚合物可以有效抑制血小板粘附,并证明了碳氟表面活性剂聚合物作为ePTFE血管移植物的非血栓形成涂层的潜在应用。