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体外循环管路材料的颗粒散裂和增塑剂(邻苯二甲酸二(2-乙基己基)酯)释放

Particle spallation and plasticiser (DEHP) release from extracorporeal circuit tubing materials.

作者信息

Hoenich N A, Thompson J, Varini E, McCabe J, Appleton D

机构信息

Department of Medicine, School of Medical Clinical Sciences, University of Newcastle upon Tyne, UK.

出版信息

Int J Artif Organs. 1990 Jan;13(1):55-62.

PMID:2394496
Abstract

Particle spallation and plasticiser (DEHP) release from medical grade polyvinylchloride (PVC), co-extruded PVC-polyurethane (PIVIPOL)R and an experimentally produced co-extruded PVC-ethylene vinyl acetate (EVA) has been studied when used with manually occluded and self-occluding peristaltic pumps over a six hour pumping period. The shore hardness of the tubings studied were similar but the luminal coating thickness differed (0.2 mm polyurethane, 0.99 mm EVA). The pattern of particle release was similar for all materials on the pump type used with the majority of particles released being less than 5 microns in diameter. The number of particles greater than 5 microns released was independent of the tubing material but depended on the pump type. Particle release with self-occluding pumps was significantly higher (p less than 0.001) than for the manually occluded pump. Scanning electron microscopy indicated that the particles released originate from the repeated compression and flexing of the insert during pumping which leads to material structural failure. The higher release observed in the case of self-occluding pumps is suggestive of over-occlusion by the springs utilised in the pump. DEHP release (ppm) over a six hour period while perfused at 300 ml/min was significantly reduced for co-extruded tubing (0.56 +/- 0.05 mg (PVC-polyurethane) and 0.12 +/- 0.04 mg (PVC-EVA) compared with PVC (0.74 +/- 0.05 mg).

摘要

在六小时的泵送期间,当与手动闭塞和自闭塞蠕动泵一起使用时,研究了医用级聚氯乙烯(PVC)、共挤出PVC-聚氨酯(PIVIPOL)R和实验生产的共挤出PVC-乙烯醋酸乙烯酯(EVA)的颗粒散裂和增塑剂(DEHP)释放情况。所研究管材的肖氏硬度相似,但管腔涂层厚度不同(聚氨酯0.2毫米,EVA 0.99毫米)。对于所有材料,在使用的泵类型上颗粒释放模式相似,释放的大多数颗粒直径小于5微米。大于5微米的颗粒释放数量与管材材料无关,但取决于泵的类型。自闭塞泵的颗粒释放量显著高于手动闭塞泵(p小于0.001)。扫描电子显微镜表明,释放的颗粒源自泵送过程中插入物的反复压缩和弯曲,这导致材料结构失效。在自闭塞泵的情况下观察到的较高释放量表明泵中使用的弹簧过度闭塞。在以300毫升/分钟灌注时,共挤出管材(PVC-聚氨酯为0.56±0.05毫克,PVC-EVA为0.12±0.04毫克)在六小时内的DEHP释放量(ppm)与PVC(0.74±0.05毫克)相比显著降低。

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