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首页> 外文期刊>Journal of biomedical materials research, Part A >Exudation of additives to the surface of medical devices: impact on biocompatibility in the case of polyurethane used in implantable catheters
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Exudation of additives to the surface of medical devices: impact on biocompatibility in the case of polyurethane used in implantable catheters

机译:添加剂渗入医疗设备表面:在植入式导管中使用聚氨酯的情况下,对生物相容性的影响

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摘要

Surface state is one of the most important parameters determining the biocompatibility of an implantable medical device, any change on the surface once in contact with body tissues can impact the biological response (cytotoxicity, inflammation, irritation, thrombosis, etc.). In the present study, we use (Pellethane((R))) catheter-based polyurethane (PU), because of its many applications in the field of medical devices, to evaluate the impact of additives blooming on the biocompatibility. Four different antioxidants and two anti-ultraviolet stabilizers were included in this study. A comprehensive study was conducted to evaluate the consequences of cellular exposure to theses additives in the following three forms: in dissolved form and after surface blooming, in amorphous and in crystalized ones, and finally in the overall biocompatibility of the native PU. Surface roughness was analyzed with atomic force microscopy. Endothelial cells' viability was studied in contact with all the three physical forms. A preliminary hemocompatibility evaluation was performed through the measurement of whole blood hemolysis, as well as platelet adhesion in contact with the different PU samples. The study of the proinflammatory IL- and TNF- production by macrophages in contact with these films is also reported. (c) 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 104A: 2954-2967, 2016.
机译:表面状态是决定可植入医疗设备生物相容性的最重要参数之一,一旦与人体组织接触,表面上的任何变化都会影响生物反应(细胞毒性,炎症,刺激性,血栓形成等)。在本研究中,由于其在医疗器械领域的许多应用,我们使用(Pellethane(R))导管基聚氨酯(PU)来评估添加剂大量添加对生物相容性的影响。这项研究包括四种不同的抗氧化剂和两种抗紫外线稳定剂。进行了一项全面的研究,以评估细胞接触以下三种形式的这些添加剂的后果:以溶解形式和表面起霜后,以无定形和结晶形式,以及最终与天然PU的整体生物相容性。用原子力显微镜分析表面粗糙度。在与所有三种物理形式接触时研究了内皮细胞的生存能力。通过测量全血溶血以及与不同PU样品接触的血小板粘附性,进行了初步的血液相容性评估。还报道了巨噬细胞与这些膜接触产生促炎性IL和TNF的研究。 (c)2016 Wiley Periodicals,Inc.生物医学材料研究A部分:104A:2954-2967,2016。

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