Lelah M D, Grasel T G, Pierce J A, Cooper S L
J Biomed Mater Res. 1986 Apr;20(4):433-68. doi: 10.1002/jbm.820200403.
Despite the use of polyurethanes in a number of blood-contacting applications, little is known about the contributing effects of the various polyurethane components in thrombogenesis. In order to investigate blood-polyurethane interactions, a number of different polyurethanes were examined in an acute canine ex vivo series shunt experiment. Multiprobe surface characterization techniques, including contact angle measurements, ESCA, ATR-IR, and SEM were used to obtain surface property information on the materials studied. The polyurethanes examined included several with different soft segment types, a series of materials with different hard segment diisocyanates and chain extenders, a series consisting of the same polymer cast from different solvents, a zwitterionomer, and a hard segment analog. Two commercial urethanes were also examined, and the effect of methanol extraction on these materials was studied. The blood-contact and surface characterization results indicated that both the surface concentration and type of hard segment were of importance in determining blood response. The relative concentration of hard segment on the polymer surface was found to affect the observed blood-material interaction, although the extent of this effect was found to depend on the hard and soft segment components of the copolymer system. Both the surface properties and thrombogenicity of a particular polyurethane were changed by casting from different solvents, indicating the need to optimize and control fabrication conditions. Methanol extraction was found to improve the thromboresistance of the commercial polyurethanes.
尽管聚氨酯在许多与血液接触的应用中有所使用,但对于各种聚氨酯成分在血栓形成中的作用知之甚少。为了研究血液与聚氨酯的相互作用,在急性犬离体串联分流实验中对多种不同的聚氨酯进行了检测。采用了多种表面表征技术,包括接触角测量、电子能谱化学分析(ESCA)、衰减全反射红外光谱(ATR-IR)和扫描电子显微镜(SEM),以获取所研究材料的表面性质信息。检测的聚氨酯包括几种具有不同软段类型的、一系列具有不同硬段二异氰酸酯和扩链剂的材料、一系列由不同溶剂浇铸而成的相同聚合物、一种两性离子聚合物以及一种硬段类似物。还检测了两种商用聚氨酯,并研究了甲醇萃取对这些材料的影响。血液接触和表面表征结果表明,硬段的表面浓度和类型在决定血液反应方面都很重要。发现聚合物表面硬段的相对浓度会影响观察到的血液与材料的相互作用,不过这种影响的程度取决于共聚物体系的硬段和软段成分。从不同溶剂浇铸会改变特定聚氨酯的表面性质和血栓形成倾向,这表明需要优化和控制制备条件。发现甲醇萃取可提高商用聚氨酯的抗血栓性。