首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >In vitro and ex vivo blood compatibility study of 2-methacryloyloxyethyl phosphorylcholine (MPC) copolymer-coated hemodialysis hollow fibers.
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In vitro and ex vivo blood compatibility study of 2-methacryloyloxyethyl phosphorylcholine (MPC) copolymer-coated hemodialysis hollow fibers.

机译:2-甲基丙烯酰氧基氧乙基磷酸胆碱(MPC)共聚物涂层血液透析中空纤维的体外和离体血液相容性研究。

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摘要

To identify the advantages of 2-methacryloyloxyethyl phosphorylcholine (MPC) copolymer-coated polysulfone (PSf) hollow fibers for hemodialyzer and hemofilter minimodules with hollow fibers were made and blood compatibility was evaluated in vitro and ex vivo. Three types of hollow fibers, i.e., pure PSf (no additives), PSf alloyed with poly(1-vinyl-2-pyrrolidone) (PVPy), and PSf coated with the MPC copolymer, were processed in wet conditions. Commercially available hollow fibers (APS) were used as a control sample. The PSf hollow fibers have a condensed structure. A porous structure was observed when the PVPy was alloyed before wet processing, and no effect of the innercoated MPC copolymer on the porous structure was observed. One-tenth-sized minimodules of the conventional hemodialyzer were fabricated with 200 fibers each. The solute permeability of the hollow fibers was evaluated using 10% bovine serum in a buffer solution containing cytochrome C, which is a model protein of Beta(2)-microglobulin. After circulation for 2.5 h, the solute permeability of APS and PVPy-alloyed PSf hollow fibers decreased to 50% compared with their initial values. In contrast, the value for the hollow fibers innercoated with the MPC copolymer maintained its initial level. The inner surface of the dialysis membranes was observed with a transmission electron microscope and a layer of adsorbed protein on the PSf, APS, and PVPy-alloyed PSf hollow fibers was observed, but not on the MPC copolymer-coated fibers. Blood cell adhesion was then evaluated by circulation of whole rabbit blood without any anticoagulant ex vivo. Many adherent cells were observed on the PVPy-alloyed PSf hollow fibers; however, blood cells did not adhere or aggregate on the MPC copolymer-coated hollow fibers. From these results, we concluded that the in-situ coating of MPC copolymer on PSf hollow fibers is effective in preventing blood coagulation and maintaining the solute permeability of the fibers.
机译:为了确定2-甲基丙烯酰氧基乙基磷酸胆碱(MPC)共聚物涂层的聚砜(PSf)的优势,制备了中空纤维用于血液透析仪和带有中空纤维的血液过滤器微型模块,并在体外和离体评估了血液相容性。三种中空纤维,即纯PSf(无添加剂),与聚(1-乙烯基-2-吡咯烷酮)(PVPy)合金化的PSf,以及涂有MPC共聚物的PSf,都是在潮湿条件下加工的。使用可商购的中空纤维(APS)作为对照样品。 PSf中空纤维具有凝聚结构。当在湿法加工之前使PVPy合金化时,观察到多孔结构,并且未观察到内涂层的MPC共聚物对多孔结构的影响。常规血液透析器的十分之一微型模块分别由200条纤维制成。使用10%牛血清在含有细胞色素C的缓冲溶液中评估中空纤维的溶质渗透性,该细胞色素C是Beta(2)-微球蛋白的模型蛋白。循环2.5小时后,APS和PVPy合金化PSf中空纤维的溶质渗透率与其初始值相比降低了50%。相反,内涂有MPC共聚物的中空纤维的值保持其初始水平。用透射电子显微镜观察透析膜的内表面,并且在PSf,APS和PVPy合金化的PSf中空纤维上观察到一层吸附蛋白,但在MPC共聚物涂覆的纤维上观察不到。然后通过全兔血液循环来评估血细胞粘附力,而无任何体外抗凝剂。在PVPy合金化PSf中空纤维上观察到许多贴壁细胞。然而,血细胞没有粘附或聚集在MPC共聚物涂层的中空纤维上。从这些结果,我们得出结论,在PSf中空纤维上原位涂覆MPC共聚物可有效防止血液凝结并保持纤维的溶质渗透性。

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