Han D K, Park K D, Kim Y H
Biomaterials Research Center, Korea Institute of Science and Technology, Cheongryang, Seoul.
J Biomater Sci Polym Ed. 1998;9(2):163-74. doi: 10.1163/156856298x00497.
Sulfonated poly(ethylene oxide) (PEO-SO3)-grafted polyurethane (PU) copolymer (PU-PEO-SO3) was developed for utilization as a material for biomedical applications. Its bulk properties and biocompatibility were investigated and the results were compared to those of PU and PU-PEO (not sulfonated). PU-PEO-SO3 copolymer showed higher water uptake than PU and PU-PEO, indicative of increased hydrophilicity due to the grafting of PEO-SO3. Compared with PU, PU-PEO-SO3 displayed lower glass transition temperature (Tg) and melting endotherm from DSC analysis, suggesting the increase of microphase separation and the suppression of hard-segment packing. PU-PEO-SO3 had practically similar mechanical properties to PU, indicating that the chemical modification of PU was accomplished without reducing its bulk properties. From the results of biocompatibility tests, PU-PEO-SO3 copolymer showed significantly lower adhesion of platelets and S. epidermidis than PU control and PU-PEO. In addition, the platelet factor 4 (PF4) released from platelets was the lowest in PU-PEO-SO3 among the test materials. PU-PEO-SO3 copolymer, which has excellent mechanical properties and biocompatibility, is expected to be useful as coating, molding, and blending materials for artificial organs and medical devices.
磺化聚环氧乙烷(PEO-SO3)接枝聚氨酯(PU)共聚物(PU-PEO-SO3)被开发用作生物医学应用材料。研究了其本体性能和生物相容性,并将结果与PU和PU-PEO(未磺化)进行比较。PU-PEO-SO3共聚物的吸水率高于PU和PU-PEO,这表明由于PEO-SO3的接枝,亲水性增加。与PU相比,DSC分析显示PU-PEO-SO3的玻璃化转变温度(Tg)和熔融吸热较低,这表明微相分离增加,硬段堆积受到抑制。PU-PEO-SO3的力学性能与PU实际相似,这表明PU的化学改性在不降低其本体性能的情况下完成。从生物相容性测试结果来看,PU-PEO-SO3共聚物的血小板和表皮葡萄球菌粘附率明显低于PU对照和PU-PEO。此外,在测试材料中,PU-PEO-SO3中血小板释放的血小板因子4(PF4)最低。具有优异力学性能和生物相容性的PU-PEO-SO3共聚物有望用作人工器官和医疗设备的涂层、成型和共混材料。