Yu Guanhua, Ji Jian, Wang Dongan, Feng Linxian, Shen Jiacong
Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2004 Apr;21(2):184-7.
Amphiphilic coupling-polymer of stearyl poly (ethylene oxide)-co-4, 4'-methylendiphenyl diisocyanate-co-stearyl poly(ethylene oxide), MSPEO, was specially designed as surface-modifying additives. The blends of MSPEO in both polyether urethane (PEU) and chitosan(Chi), as the coating materials for intravascular device were investigated. Two kinds of static clotting time tests, plasma recalcification time (PRT) and prothrombin time(PT), as well as the static platelet adhesion experiment were carried out. And the dynamic anti-coagulation experiment was performed with a closed-loop tubular system under a blood shear rate of 1,500 s-1. The results demonstrate that both blend coatings can improve the anti-coagulation of polyurethane greatly and will not lead to hemolysis, and that more platelets adhere to the surface modified by Chi-MSPEO blend coating as compared with those adhere to the surface modified by PEU-MSPEO blend coating. The surface modified by Chi-MSPEO has longer PRT, whereas the surface modified by PEU-MSPEO has longer PT.
硬脂酰聚环氧乙烷-4,4'-亚甲基二苯基二异氰酸酯-硬脂酰聚环氧乙烷两亲性偶联聚合物(MSPEO)被专门设计为表面改性添加剂。研究了MSPEO在作为血管内装置涂层材料的聚醚聚氨酯(PEU)和壳聚糖(Chi)中的共混物。进行了两种静态凝血时间测试,即血浆复钙时间(PRT)和凝血酶原时间(PT),以及静态血小板黏附实验。并在1500 s-1的血液剪切速率下,使用闭环管状系统进行了动态抗凝实验。结果表明,两种共混涂层都能大大提高聚氨酯的抗凝性能,且不会导致溶血,与PEU-MSPEO共混涂层改性的表面相比,更多的血小板黏附在Chi-MSPEO共混涂层改性的表面。Chi-MSPEO改性的表面具有更长PRT,而PEU-MSPEO改性的表面具有更长的PT。