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一种用于血管内氧合器的新型聚酰亚胺中空纤维的研发。

Development of a novel polyimide hollow fiber for an intravascular oxygenator.

作者信息

Kawakami H, Mori Y, Takagi J, Nagaoka S, Kanamori T, Shinbo T, Kubota S

机构信息

Department of Industrial Chemistry, Tokyo Metropolitan University, Japan.

出版信息

ASAIO J. 1997 Sep-Oct;43(5):M490-4.

PMID:9360091
Abstract

The authors have synthesized a novel fluorinated polyimide to develop a membrane material for oxygenators and fabricated polyimide hollow fibers for use in an intravascular oxygenator. A dry/wet phase inversion process has been applied to a spinning process to prepare an asymmetric polyimide hollow fiber. The outer surface of the hollow fiber consists of an ultrathin, dense skin layer, with a calculated apparent thickness of approximately 60 nm. The fiber diameter was 800 microns with a wall thickness of 130 microns. The asymmetric hollow fiber has two advantages because (a) the hollow fiber does not produce plasma leakage due to the dense skin layer of the surface and (b) O2 and CO2 transfer rates through the hollow fiber are enhanced due to the ultrathin skin layer and are significantly larger than those of presently available membrane oxygenators. The blood compatibility of the polyimide hollow fiber without heparinization has been evaluated in vitro. Deformation and aggregation of platelets adherent to the fibers were not observed, and the polyimide suppressed platelet activation. The polyimide significantly reduced the production of anaphylatoxin and also suppressed complement activation.

摘要

作者合成了一种新型氟化聚酰亚胺,以开发用于氧合器的膜材料,并制备了用于血管内氧合器的聚酰亚胺中空纤维。干湿相转化工艺已应用于纺丝过程,以制备不对称聚酰亚胺中空纤维。中空纤维的外表面由超薄致密皮层组成,计算得出的表观厚度约为60纳米。纤维直径为800微米,壁厚为130微米。这种不对称中空纤维有两个优点,一是由于表面致密皮层,中空纤维不会产生血浆泄漏;二是由于超薄皮层,氧气和二氧化碳通过中空纤维的传输速率提高,且明显大于目前可用的膜式氧合器。未肝素化的聚酰亚胺中空纤维的血液相容性已在体外进行了评估。未观察到附着在纤维上的血小板变形和聚集,聚酰亚胺抑制了血小板活化。聚酰亚胺显著降低了过敏毒素的产生,还抑制了补体激活。

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