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A novel medical device coating prevents Staphylococcus aureus biofilm formation on medical device surfaces

机译:一种新型医疗器械涂层可防止在医疗装置表面上形成金黄色葡萄球菌生物膜

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摘要

Prevention of device related infections due to Staphylococcus aureus biofilms on devices represents a significant challenge. Such infections have recently been shown to be dependent on the coagulation pathway via activation of pro-thrombin and fibrin production. Three direct-thrombin inhibitors, argatroban, hirudin and dabigatran, were examined to determine their effect on preventing S. aureus biofilm on plastic biochip surfaces under shear stress using an in vivo relevant model of infection. Surface functionalization of polyurethane discs via dityrosine covalent crosslinking with hirudin was performed and changes in bacterial density and microscopic appearances determined. The three direct-thrombin inhibitors prevented S. aureus biofilm formation on plasma-coated surfaces treated with these agents. Coating of polyurethane with one of these agents, hirudin, significantly inhibited biofilm formation on the modified surface. These findings reveal the exciting potential for coating biomaterial surfaces with direct thrombin inhibitors to prevent staphylococcal binding and subsequent device-related infections.
机译:预防装置相关的感染由于装置上的金黄色葡萄球菌原料,这是一个重大挑战。最近已经显示出这种感染依赖于通过激活促凝血酶和纤维蛋白产生的凝血途径。检查了三种直凝血酶抑制剂,argatroban,血红素和达比甙,以确定它们对使用体内相关模型在剪切应力下预防塑料生物芯片表面的植物生物芯片表面的影响。通过双核苷酸通过双卤素的聚氨酯盘与血红素的共价交联的表面官能化,并确定细菌密度和微观外观的变化。三种直凝血酶抑制剂防止了金黄色葡萄球菌生物膜在用这些试剂处理的血浆涂层表面上形成。聚氨酯涂覆与这些试剂中的一种,血红素,显着抑制改性表面上的生物膜形成。这些发现揭示了用直接凝血酶抑制剂涂覆生物材料表面的激动潜力,以防止葡萄球菌结合和随后的有关的装置。

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