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首页> 外文期刊>International Journal of Nanomedicine >Antimicrobial activity and cytocompatibility of silver nanoparticles coated catheters via a biomimetic surface functionalization strategy
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Antimicrobial activity and cytocompatibility of silver nanoparticles coated catheters via a biomimetic surface functionalization strategy

机译:银纳米粒子涂覆导管通过仿生表面官能化策略的抗微生物活性和细胞栓塞性

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摘要

Catheter-related bloodstream infections are a significant problem in the clinic and may result in a serious infection. Here, we developed a facile and green procedure for buildup of silver nanoparticles (AgNPs) on the central venous catheters (CVCs) surface. Inspired by mussel adhesive proteins, dopamine was used to form a thin polydopamine layer and induce AgNPs formation without additional reductants or stabilizers. The chemical and physicochemical properties of AgNPs coated CVCs were characterized by scanning electron microscopy, X-ray photoelectron spectroscopy, Raman spectroscopy, and water contact angle. The Staphylococcus aureus culture experiment was used to study the antibacterial properties. The cytocompatibility was assessed by water soluble tetrazolium salts (WST-1) assay, fluorescence staining, and scanning electron microscopy analysis. The results indicated that the CVCs surface was successfully coated with compact AgNPs. AgNPs were significantly well separated and spherical with a size of 30–50 nm. The density of AgNPs could be modulated by the concentration of silver nitrate solution. The antibacterial activity was dependent on the AgNPs dose. The high dose of AgNPs showed excellent antibacterial activity while associated with increased cytotoxicity. The appropriate density of AgNPs coated CVCs could exhibit improved biocompatibility and maintained evident sterilization effect. It is promising to design mussel-inspired silver releasing CVCs with both significant antimicrobial efficacy and appropriate biological safety.
机译:与导管相关的血流感染是临床中的重大问题,可能导致严重的感染。在这里,我们开发了一个容易和绿色的过程,用于在中心静脉导管(CVCS)表面上的银纳米颗粒(AgNP)积聚。灵感来自贻贝粘合剂蛋白,多巴胺用于形成薄的多水多胺层,并在没有额外的还原剂或稳定剂的情况下诱导agnps形成。通过扫描电子显微镜,X射线光电子能谱,拉曼光谱和水接触角来表征AgNPS涂覆的CVC的化学和物理化学性质。金黄色葡萄球菌培养实验用于研究抗菌性质。通过水溶性四唑盐(WST-1)测定,荧光染色和扫描电子显微镜分析评估细胞织组种。结果表明,CVCS表面成功涂有紧凑的agnps。 AgNPs显着分离得很好,尺寸为30-50nm。 AgNP的密度可以通过硝酸银溶液的浓度来调节。抗菌活性依赖于AgNPS剂量。高剂量的agnps显示出优异的抗菌活性,同时与细胞毒性增加相关。适当的AgNPS涂层CVC的密度可以表现出改善的生物相容性并保持明显的灭菌效果。它很有希望地设计贻贝启发的银释放CVC,具有显着的抗微生物功效和适当的生物安全性。

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