Bosch T, Schmidt B, Spencer P C, Samtleben W, Pelger M, Baurmeister U, Gurland H J
Artif Organs. 1987 Apr;11(2):144-8. doi: 10.1111/j.1525-1594.1987.tb02647.x.
To evaluate membrane biocompatibility, an open loop ex vivo model was designed simulating the hemodialysis procedure. Blood was withdrawn continuously from healthy nonuremic donors, heparinized, and pumped through a module containing the membrane to be studied. C3a generation in the module was determined at various time points comparing the cuprammonium cellulose (CC) membrane and four types of modified cellulose (MC) membrane, each with a different degree of hydroxyl (OH-) group substitution. In other studies, C3a generation in the ex vivo mode was compared with that during in vivo dialysis. In the ex vivo model, C3a generation with MC membranes was reduced by 70% compared with CC. However, within the MC group, the degree of C3a generation did not correlate with the degree of OH-group substitution. In vivo studies confirmed the reduced degree of C3a generation with the MC membrane compared with CC. Additionally, validation studies using the CC membrane showed excellent agreement between C3a generation during ex vivo perfusion and in vivo dialysis. The results suggest that a group of new MC membranes causes substantially less complement activation than the CC membrane but that the degree of complement activation with various subtypes of MC membranes is not related to the degree of OH-group substitution.
为评估膜的生物相容性,设计了一种模拟血液透析过程的开环离体模型。从健康的非尿毒症供体中持续抽取血液,进行肝素化处理,然后泵入包含待研究膜的模块中。在不同时间点测定模块中C3a的生成情况,比较铜铵纤维素(CC)膜和四种不同羟(OH-)基取代程度的改性纤维素(MC)膜。在其他研究中,将离体模式下C3a的生成与体内透析期间的情况进行了比较。在离体模型中,与CC膜相比,MC膜的C3a生成减少了70%。然而,在MC组中,C3a生成程度与OH-基取代程度无关。体内研究证实,与CC膜相比,MC膜的C3a生成程度降低。此外,使用CC膜的验证研究表明,离体灌注期间和体内透析期间C3a的生成情况具有极好的一致性。结果表明,一组新的MC膜引起的补体激活比CC膜少得多,但各种亚型MC膜的补体激活程度与OH-基取代程度无关。