首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Polymer-free immobilization of a cyclic RGD peptide on a nitinol stent promotes integrin-dependent endothelial coverage of strut surfaces.
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Polymer-free immobilization of a cyclic RGD peptide on a nitinol stent promotes integrin-dependent endothelial coverage of strut surfaces.

机译:镍钛合金支架上环状RGD肽的无聚合物固定促进了整合素依赖性内皮对支杆表面的覆盖。

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摘要

This study examined the utility of a stabilized cyclic RGD peptide chemically modified to selectively bind to titanium-oxide for enhanced biocompatibility of self-expanding nitinol stents. Endothelial cells express integrin receptors that promote attachment to subendothelial matrix proteins. Integrin binding to arginine-glycine-aspartic acid (RGD) peptide derivatives mimic naturally occurring adherent interactions. Irreversible covalent surface coating of conventional nitinol stents with a cyclic RGD (cRGD) peptide highly specific for integrin alpha v beta 3 might foster endothelialization after stent implantation. A selective cRGD peptide was irreversibly immobilized onto titanium oxide-rich nitinol coupons or self-expanding stents. Functionality of the engrafted RGD peptide was demonstrated using in vitro endothelial bioassays. A subsequent 7-day in vivo endothelialization study was performed using cRGD-coated self-expanding nitinol stents in rabbits. cRGD peptide coating effectively promoted endothelial cell anchorage, migration, and proliferation confirmed by increased focal adhesions. Proof-of-concept studies of rabbit cRGD stent implants showed a significant increase in endothelial coverage above stent struts relative to stents coated with BSA (cRGD = 70.1 ± 21.9 vs. BSA = 49.9 ± 21.8%, p < 0.03). Immobilization of cRGD peptides on strut surfaces represents an innovative strategy to improve endothelialization, which may facilitate vascular healing after stent implantation.
机译:这项研究检查了经过稳定修饰的环状RGD肽的实用性,该肽经化学修饰可选择性地与氧化钛结合,从而增强自膨胀镍钛诺支架的生物相容性。内皮细胞表达整合素受体,促进整合到内皮下基质蛋白上。整联蛋白与精氨酸-甘氨酸-天冬氨酸(RGD)肽衍生物的结合模拟自然发生的粘附相互作用。常规镍钛合金支架的不可逆共价表面涂层具有高度针对整联蛋白αv beta 3的环状RGD(cRGD)肽,可促进支架植入后的内皮化。选择性地将cRGD肽不可逆地固定在富含氧化钛的镍钛合金试样或自膨胀支架上。使用体外内皮生物测定法证实了植入的RGD肽的功能。随后,使用cRGD涂层的自膨胀镍钛合金支架对兔进行了7天的体内内皮化研究。 cRGD肽涂层有效地促进了内皮细胞的锚定,迁移和增殖,这是通过增加粘着斑证实的。兔cRGD支架植入物的概念验证研究表明,相对于涂有BSA的支架,支架支架上方的内皮覆盖率显着增加(cRGD = 70.1±21.9,而BSA = 49.9±21.8%,p <0.03)。将cRGD肽固定在支杆表面代表了一种改善内皮化的创新策略,这可以促进支架植入后血管的愈合。

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