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聚二甲基硅氧烷含量影响合成血管移植物的体外血液相容性。

PDMS content affects in vitro hemocompatibility of synthetic vascular grafts.

作者信息

Spiller Dario, Losi Paola, Briganti Enrica, Sbrana Silverio, Kull Silvia, Martinelli Ilaria, Soldani Giorgio

机构信息

Laboratory for Biomaterials and Graft Technology, Institute of Clinical Physiology CNR, Via Aurelia Sud - Loc. Montepepe, 54100 Massa, Italy.

出版信息

J Mater Sci Mater Med. 2007 Jun;18(6):1097-104. doi: 10.1007/s10856-006-0067-0. Epub 2007 Feb 1.

Abstract

An unsolved problem when employing small-diameter vascular grafts for aorto-coronary by-pass and peripheral reconstruction is the early thrombotic occlusion. The PEtU-PDMS is a new elastomeric material, composed of poly(ether)urethane and polydimethylsiloxane, synthesized to realize grafts with improved hemocompatibility characteristics. In order to investigate the effect of PDMS content on hemocompatibility, three different percentages of PDMS containing grafts (10, 25 and 40) were evaluated. Grafts realized with Estane 5714-F1 and silicone medical grade tubes were used as references. The hemocompatibility was investigated by an in vitro circuit in which human anticoagulated blood was circulated into grafts by a peristaltic pump modified to obtain a passive flow. For each experiment, 40 cm length graft was closed into a circular loop and put in rotation for 2 h at 37 degrees C. At the end of the experiments different parameters regarding platelet adhesion and activation were evaluated: circulating platelets count, beta-thromboglobulin release, platelet CD62P expression and amount of monocyte-platelet conjugates. PEtU-PDMS grafts with 25 and 40% of PDMS induced the lowest platelet adhesion, plasma level of beta-TG and amount of monocyte-platelet conjugates. No significative variations were observed in CD62P expression. In conclusion, PDMS content significatively affects blood-graft surface interaction, in fact higher PDMS percentage containing grafts showed the best in vitro hemocompatibility.

摘要

在使用小直径血管移植物进行主动脉冠状动脉搭桥术和外周血管重建时,一个尚未解决的问题是早期血栓形成阻塞。PEtU-PDMS是一种新型弹性体材料,由聚(醚)聚氨酯和聚二甲基硅氧烷组成,合成该材料是为了实现具有改善血液相容性特征的移植物。为了研究聚二甲基硅氧烷(PDMS)含量对血液相容性的影响,对三种不同PDMS含量百分比的移植物(10%、25%和40%)进行了评估。使用由埃斯坦5714-F1和医用级硅胶管制成的移植物作为对照。通过体外循环来研究血液相容性,在该体外循环中,通过改装的蠕动泵将人体抗凝血液泵入微通道移植物以获得被动流动。对于每个实验,将40厘米长的移植物封闭成一个圆环,并在37摄氏度下旋转2小时。在实验结束时,评估了与血小板粘附和活化有关的不同参数:循环血小板计数、β-血小板球蛋白释放、血小板CD62P表达以及单核细胞-血小板结合物的数量。含有25%和40% PDMS的PEtU-PDMS移植物诱导的血小板粘附、β-TG血浆水平和单核细胞-血小板结合物数量最低。在CD62P表达方面未观察到显著变化。总之,PDMS含量显著影响血液与移植物表面的相互作用,实际上,含有较高PDMS百分比的移植物在体外显示出最佳的血液相容性。

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