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首页> 外文期刊>Journal of biomaterials science >Evaluation of electrospun PLLA/PEGDMA polymer coatings for vascular stent material
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Evaluation of electrospun PLLA/PEGDMA polymer coatings for vascular stent material

机译:用于血管支架材料的电纺PLLA / PEGDMA聚合物涂层的评估

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The field of percutaneous coronary intervention has seen a plethora of advances over the past few decades, which have allowed for its development into safe and effective treatments for patients suffering from cardiovascular diseases. However, stent thrombosis and in-stent restenosis remain clinically significant problems. Herein, we describe the synthesis and characterization of fibrous polymer coatings on stent material nitinol, in the hopes of developing a more suitable stent surface to enhance re-endothelialization. Electrospinning technique was used to fabricate polyethylene glycol dimethacrylate/poly l-lactide acid (PEGDMA/PLLA) blend fiber substrate with tunable elasticity and hydrophilicity for use as coatings. Attachment of platelets and arterial smooth muscle cells (SMC) onto the coatings as well as the secretory effect of mesenchymal stem cells cultured on the coatings on the proliferation and migration of arterial endothelial cells and SMCs were assessed. It was demonstrated that electrospun PEGDMA/PLLA coating with 1:1 ratio of the components on the nitinol stent-reduced platelet and SMC attachment and increased stem cell secretory factors that enhance endothelial proliferation. We therefore postulate that the fibrous coating surface would possess enhanced biological compatibility of nitinol stents and hold the potential in preventing stent failure through restenosis and thrombosis.
机译:在过去的几十年中,经皮冠状动脉介入治疗领域取得了巨大的进步,这使得它发展成为针对心血管疾病患者的安全有效的治疗方法。但是,支架血栓形成和支架内再狭窄仍然是临床上的重大问题。在本文中,我们描述了支架材料镍钛诺上纤维聚合物涂层的合成和表征,以期开发出更合适的支架表面来增强再内皮化。使用静电纺丝技术来制备具有可调的弹性和亲水性的聚乙二醇二甲基丙烯酸酯/聚l-丙交酯酸(PEGDMA / PLLA)共混纤维基材,用作涂料。评估了血小板和动脉平滑肌细胞(SMC)在涂层上的附着情况以及培养在涂层上的间充质干细胞对动脉内皮细胞和SMC增殖和迁移的分泌作用。结果表明,镍钛合金支架上成分比例为1:1的静电纺丝PEGDMA / PLLA涂层可减少血小板和SMC附着,并增加干细胞分泌因子,从而增强内皮细胞的增殖。因此,我们推测纤维涂层表面将具有增强的镍钛合金支架生物相容性,并具有防止因再狭窄和血栓形成而导致支架失效的潜力。

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