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Anticoagulant Polyethylene Terephthalate Surface by Plasma-Mediated Fucoidan Immobilization

机译:血浆介导的褐藻胶固定化抗凝聚对苯二甲酸乙二醇酯表面

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摘要

Biomaterial-based blood clot formation is one of the biggest drawbacks of blood-contacting devices. To avoid blood clot formation, their surface must be tailored to increase hemocompatibility. Most synthetic polymeric biomaterials are inert and lack bonding sites for chemical agents to bond or tailor to the surface. In this study, polyethylene terephthalate was subjected to direct current air plasma treatment to enhance its surface energy and to bring oxidative functional binding sites. Marine-sourced anticoagulant sulphated polysaccharide fucoidan from Fucus vesiculosus was then immobilized onto the treated polyethylene terephthalate (PET) surface at different pH values to optimize chemical bonding behavior and therefore anticoagulant performance. Surface properties of samples were monitored using the water contact angle; chemical analyses were performed by FTIR and X-ray photoelectron spectroscopy (XPS) and their anticoagulant activity was tested by means of prothrombin time, activated partial thromboplastin time and thrombin time. On each of the fucoidan-immobilized surfaces, anticoagulation activity was performed by extending the thrombin time threshold and their pH 5 counterpart performed the best result compared to others.
机译:基于生物材料的血块形成是血液接触装置的最大缺点之一。为了避免形成血块,必须调整其表面以增加血液相容性。大多数合成聚合物生物材料是惰性的,并且缺乏用于化学试剂结合或定制表面的结合位点。在这项研究中,聚对苯二甲酸乙二醇酯经过直流空气等离子体处理,以提高其表面能并带来氧化功能键合位点。然后在不同的pH值下,将来自海藻(Fusus vesiculosus)的海洋来源的抗凝硫酸化岩藻依聚糖固定在处理过的聚对苯二甲酸乙二醇酯(PET)表面上,以优化化学键合行为,从而优化抗凝性能。使用水接触角监测样品的表面性质。通过FTIR和X射线光电子能谱(XPS)进行化学分析,并通过凝血酶原时间,活化的部分凝血活酶时间和凝血酶时间测试其抗凝活性。在每个岩藻依聚糖固定的表面上,通过延长凝血酶时间阈值来进行抗凝活性,与之相比,它们的pH 5对应物表现最佳。

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