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Renewable nano-structured coatings on medical devices prevent the transmission of clinically relevant pathogens

机译:医疗装置上可再生纳米结构涂层防止临床相关病原体的传播

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摘要

Multi-resistant pathogens are one of the main challenges in health care as resistance genes vastly spread globally. One of the major causes for the dissemination of nosocomial infections is the contamination of medical devices. However, the common authorized sterilization processes are not suitable for heat sensitive medical devices. Against that background, a coating technique has been developed, which deposits a renewable layer on the surface of a medical device. For that reason, nanostructured coatings with cetyl palmitate (CTP) and silicium (Sicarstar)-nanoparticles have been tested. The different types of nanoparticles have been applied on polyethylene (PE) surfaces. PE is a material, which has been frequently used for medical devices like angiographic catheters. Before every coating, the surfaces have been treated in an anisothermal physical plasma, which has been carried out in a low-pressure discharge regime. The freshly coated specimens have been tested by several physical methods and biological techniques to obtain surface parameters such as the layer coverage of the substrate or the roughness and the cytotoxicity or the antimicrobial efficacy, respectively. First investigations confirm that the coatings considerably decrease the adsorption of microbial deposits. The coatings can be detached in a subsequent cleaning process. This process could be embedded in the reprocessing process as well as into an industrial context.
机译:多种耐药病原体是医疗保健中的主要挑战之一,因为抗性基因在全球范围内大大传播。传播医院感染的主要原因之一是医疗器械的污染。然而,共同的授权灭菌过程不适合热敏医疗装置。在这种背景下,已经开发了一种涂覆技术,其沉积在医疗装置的表面上的可再生层。因此,已经测试了具有十六烷棕榈酸酯(CTP)和硅(SiCarstar)尼沙粒子的纳米结构涂层。已经施加了不同类型的纳米颗粒在聚乙烯(PE)表面上。 PE是一种材料,其经常用于血管造影导管等医疗器械。在每种涂层之前,已经在脱液物理等离子体中处理了表面,该等离子体已经在低压放电状态下进行。已经通过几种物理方法和生物技术测试了新涂覆的标本,以获得表面参数,例如衬底的层覆盖或粗糙度和细胞毒性或抗微生物疗效。第一调查证实涂层显着降低了微生物沉积物的吸附。涂层可以在随后的清洁过程中脱离。该过程可以嵌入重新处理过程中以及工业背景中。

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