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Direct thrombin inhibitor-bivalirudin functionalized plasma polymerized allylamine coating for improved biocompatibility of vascular devices

机译:直接凝血酶抑制剂-比伐卢定功能化的等离子聚合烯丙胺涂层可改善血管装置的生物相容性

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The direct thrombin inhibitor of bivalirudin (BVLD), a short peptide derived from hirudin, has drawn an increasing attention in clinical application because it is safer and more effective than heparin for diabetic patients with moderate- or high-risk for acute coronary syndromes (ACS). In this study, BVLD was covalently conjugated on plasma polymerized allylamine (PPAam) coated 316L stainless steel (SS) to develop an anticoagulant surface. QCM-D real time monitoring result shows that 565 ± 20 ng/cm 2 of BVLD was bound to the PPAam surface. Infrared spectroscopy (IR) and X-ray photoelectron spectroscopy (XPS) confirmed the immobilization of BVLD. The conjugation of BVLD onto the PPAam coating led to enhanced binding of thrombin, and the activity of the thrombin adsorbed on its surface was effectively inhibited. As a result, the BVLD immobilized PPAam (BVLD-PPAam) substrate prolonged the clotting times, and exhibited inhibition in adhesion and activation of platelets and fibrinogen. We also found that the BVLD-PPAam coating significantly enhanced endothelial cell adhesion, proliferation, migration and release of nitric oxide (NO) and secretion of prostaglandin I 2 (PGI 2). In vivo results indicate that the BVLD-PPAam surface restrained thrombus formation by rapidly growing a homogeneous and intact endothelium on its surface. These data suggest the potential of this multifunctional BVLD-PPAam coating for the application not only in general vascular devices such as catheters, tubes, oxygenator, hemodialysis membranes but also vascular grafts and stents.
机译:比伐卢定的直接凝血酶抑制剂比伐卢定(一种由水rud素衍生的短肽)在临床应用中受到越来越多的关注,因为它对中度或高危急性冠脉综合征(ACS)的糖尿病患者比肝素更安全,更有效。 )。在这项研究中,BVLD与等离子聚合的烯丙胺(PPAam)涂层的316L不锈钢(SS)共价偶联,以形成抗凝表面。 QCM-D实时监测结果表明,565±20 ng / cm 2的BVLD与PPAam表面结合。红外光谱(IR)和X射线光电子能谱(XPS)证实了BVLD的固定化。 BVLD与PPAam涂层的缀合导致凝血酶的结合增强,并且有效抑制了吸附在其表面上的凝血酶的活性。结果,固定化BVLD的PPAam(BVLD-PPAam)底物延长了凝血时间,并显示出对血小板和纤维蛋白原的粘附和活化的抑制作用。我们还发现BVLD-PPAam涂层显着增强了内皮细胞的粘附,一氧化氮(NO)的增殖,迁移和释放以及前列腺素I 2(PGI 2)的分泌。体内结果表明,BVLD-PPAam表面通过在其表面快速生长均匀且完整的内皮而抑制血栓形成。这些数据表明,这种多功能BVLD-PPAam涂层的潜力不仅可用于一般的血管装置,例如导管,管,充氧器,血液透析膜,而且还可用于血管移植物和支架。

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