Chen K Y, Kuo J F, Chen C Y
Department of Chemical Engineering, National Cheng Kung University, Tainan, Taiwan.
Biomaterials. 2000 Jan;21(2):161-71. doi: 10.1016/s0142-9612(99)00144-1.
Two novel ion-containing aliphatic polyurethanes based on 4,4'-methylene dicyclohexyl diisocyanate (H12MDI), polytetramethyl oxide (PTMO) were synthesized using either sulfonated or carboxylated chain extender. The nonionic polyurethane chain extended with 1,4-butanediol, which is denoted as H-M-BD, was synthesized. Pellethane, a biomedical-grade polyurethane, was also studied for comparison. The polymer's bulk, surface, and platelet-contacting properties were studied using Fourier transform infrared spectrophotometry, differential scanning calorimetry, water absorption analysis, electron spectroscopy for chemical analysis, static contact angle analysis, and in vitro platelet adhesion experiments. The effects of ion incorporation on the morphology, surface properties and blood compatibility are discussed. Unlike MDI-based Pellethane, all H12MDI-based polyurethanes are not composed of crystalline hard segment domain but are amorphous. The ionic polyurethanes exhibit a smaller fraction of hydrogen-bonded carbonyl groups, poorer phase separation, smaller fraction of PTMO residing at the surface, and smaller contact angle; however, significant higher water absorption value than H-M-BD and Pellethane. The in vitro platelet adhesion experiments indicated that ion incorporation, especially for carboxylate, significantly reduced the number and the degree of activation of the adherent platelets.
基于4,4'-亚甲基二环己基二异氰酸酯(H12MDI)、聚四氢呋喃(PTMO),使用磺化或羧化扩链剂合成了两种新型含离子脂肪族聚氨酯。合成了用1,4-丁二醇扩链的非离子聚氨酯,记为H-M-BD。还研究了生物医学级聚氨酯Pellethane作为对照。使用傅里叶变换红外光谱法、差示扫描量热法、吸水性分析、化学分析电子能谱、静态接触角分析和体外血小板粘附实验研究了聚合物的本体、表面和与血小板接触的性能。讨论了离子引入对形态、表面性质和血液相容性的影响。与基于MDI的Pellethane不同,所有基于H12MDI的聚氨酯都不是由结晶硬段域组成,而是无定形的。离子型聚氨酯表现出较小比例的氢键羰基、较差的相分离、较少比例的PTMO位于表面以及较小的接触角;然而,其吸水率显著高于H-M-BD和Pellethane。体外血小板粘附实验表明,离子引入,尤其是羧酸盐的引入,显著减少了粘附血小板的数量和活化程度。