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首页> 外文期刊>Advanced materials interfaces >Covalent Mucin Coatings Form Stable Anti-Biofouling Layers on a Broad Range of Medical Polymer Materials
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Covalent Mucin Coatings Form Stable Anti-Biofouling Layers on a Broad Range of Medical Polymer Materials

机译:共价粘蛋白涂层在宽范围的医用聚合物材料上形成稳定的防生物污垢层

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摘要

Approximately 10% of all hospital patients contract infections from temporary clinical implants such as urinal and vascular catheters or tracheal tubes. The ensuing complications reach from patient inconvenience and tissue inflammation to severe, life threatening complications such as pneumonia or bacteremia. All these device-associated nosocomial infections have the same origin: biofouling, i.e., the unwanted deposition of proteins, bacteria, and cells onto the device. To date, most strategies to overcome these problems are device specific, which results in high development efforts and costs. Here, it is demonstrated how one and the same coupling mechanism can be used to create a covalent antifouling coating employing mucin glycoproteins on multiple materials: with this method, a stable mucin layer can be generated on a broad range of polymer materials which are frequently used in medical engineering. It is shown that the mucin coating exhibits excellent stability against mechanical, thermal, and chemical challenges and reduces protein adsorption as well as prokaryotic and eukaryotic cell adhesion. Thus, the coating mechanism described here introduces a promising strategy to overcome biofouling issues on a broad range of medical devices.
机译:所有医院患者的约10%来自临时临床植入物(如尿壶和血管导管或气管管)的感染。随后的并发症从患者的不便和组织炎症到严重,生命危及的并发症等肺炎或肺炎或菌血症等并发症。所有这些相关的医院感染具有相同的起源:生物污染,即蛋白质,细菌和细胞的不希望的沉积到装置上。迄今为止,克服这些问题的大多数策略都是特定于设备的,这导致高发展努力和成本。在此,证明了一种和相同的耦合机构如何使用在多种材料上采用粘蛋白糖蛋白的共价防污涂层:用这种方法,可以在经常使用的宽范围的聚合物材料上产生稳定的粘蛋白层在医学工程中。结果表明,粘蛋白涂层对机械,热和化学挑战具有优异的稳定性,并降低了蛋白质吸附以及原核和真核细胞粘附。因此,这里描述的涂覆机制介绍了克服广泛医疗设备上的生物污染问题的有希望的策略。

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