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PPS-PEG surface coating to reduce thrombogenicity of small diameter ePTFE vascular grafts.

机译:PPS-PEG表面涂层可减少小直径ePTFE血管移植物的血栓形成性。

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AIMS: Patency failure of small vascular synthetic grafts is still a major problem for coronary and peripheral revascularization. Thus, three new surface coatings of small synthetic grafts were tested in an acute pig model to evaluate their thrombogenicity (extracorporeal arterio-venous shunt) and in a chronic rat model to evaluate the tissue reaction they induced (subcutaneous implantation). METHODS: In five domestic pigs (25-30 kg) an extracorporeal femoro-femoral arterio-venous shunt model was used. The study protocol included first a non-heparinized perfusion sequence followed by graft perfusion after 10,000 UI iv heparin. Grafts were perfused for 3 and 9 minutes. The following coatings were tested on ePTFE grafts: poly-propylene sulphide (PPS)--poly-ethylene glycol (PEG) (wet and dry applications) as well as carbon.Two sets of control were used, one dry and one wet (vehicle only). After perfusion grafts were examined by scanning electron microscopy for semi-quantitative assessment (score 0-3) of cellular and microthrombi deposition. To assess tissue compatibility, pieces of each material were implanted subcutaneously in 16 Wistar rats. At 2, 4, 8, 12 weeks four animals each were sacrificed for semi-quantitative (score 0-3) histologic evaluation of tissue reaction. RESULTS: In the pig model, cellular deposition and microthrombi formation increased over time. In non- heparinized animals, the coatings did not improve the surface characteristics, since they did not prevent microthrombi formation and cellular deposition. In heparinized animals, thrombogenicity was lowest in coated grafts,especially in PPS -PEG dry (p<0.05), and highest in controls. Cell deposition was lowest in PPS-PEG dry, but this difference was not statistically significant vs.controls. In the rat model,no significant differences of the tissue reaction could be shown between materials. CONCLUSION: While all coatings failed to add any benefit for lowering tissue reaction, surface coating with PPS -PEG (dry application) reduced thrombogenicity significantly (in heparinized animals) and thus appears to be promising for improving graft patency of small synthetic vascular prostheses.
机译:目的:小血管合成移植物的通畅衰竭仍然是冠状动脉和外周血运重建的主要问题。因此,在急性猪模型中测试了三种小型合成移植物的新表面涂层,以评估其血栓形成性(体外动静脉分流),在慢性大鼠模型中测试其诱导的组织反应(皮下植入)。方法:在五只家猪(25-30公斤)中,采用体外股-股-动-静脉分流模型。研究方案包括首先进行非肝素灌注,然后在10,000 UI iv肝素后进行移植物灌注。将移植物灌注3和9分钟。在ePTFE接枝上测试了以下涂层:聚丙丙烯(PPS)-聚乙二醇(PEG)(湿法和干法应用)以及碳。使用了两组对照,一组干法和一组湿法(车辆)只要)。灌注后,通过扫描电子显微镜检查移植物,以进行细胞和微血栓沉积的半定量评估(评分0-3)。为了评估组织相容性,将每种材料的碎片皮下植入16只Wistar大鼠中。在第2、4、8、12周时,处死四只动物,以进行组织反应的半定量(评分0-3)组织学评估。结果:在猪模型中,细胞沉积和微血栓形成随时间增加。在未肝素化的动物中,涂层不能改善表面特性,因为它们不能防止微血栓形成和细胞沉积。在肝素化动物中,包被的移植物中血栓形成性最低,尤其是在PPS-PEG干燥中(p <0.05),而在对照中最高。在PPS-PEG干燥中,细胞沉积最低,但与对照组相比,该差异无统计学意义。在大鼠模型中,材料之间的组织反应没有显着差异。结论:尽管所有涂层均不能为降低组织反应增加任何益处,但是PPS-PEG表面涂层(干施用)显着降低了血栓形成性(在肝素化动物中),因此似乎有望改善小型人造血管的移植通畅性。

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