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首页> 外文期刊>Journal of Applied Polymer Science >Novel LDPE/vermiculite/ciclopiroxolamine hybrid nanocomposites: Structure, surface properties, and antifungal activity
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Novel LDPE/vermiculite/ciclopiroxolamine hybrid nanocomposites: Structure, surface properties, and antifungal activity

机译:新型LDPE /蛭石/红霉氧基甲胺杂交纳米复合材料:结构,表面性质和抗真菌活性

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摘要

The increasing number of indwelling medical materials and devices are connected with infections caused by yeast, especially Candida albicans. This pathogen produces biofilms on synthetic materials, which facilitates adhesion of the organisms to devices and renders them relatively refractory to medical therapy. Since antimicrobial polymer nanocomposites present one of the promising possibilities, this study explores a new approach to achieving this goal by developing nanocomposite based on low density polyethylene (LDPE) with clay mineral vermiculite as an active carrier for antifungal compound. The set of LDPE/clay nanocomposite with increasing amount of antifungal nanofiller was prepared by melt compounding procedure. As antifungal agent was selected generally used active substance ciclopiroxolamine and this compound was loaded into natural vermiculite through ultrasound technique. The structure of all prepared samples was studied by X-ray diffraction analysis and Fourier transforms infrared spectroscopy. Further thermal properties of polyethylene/clay nanocomposites were investigated by thermogravimetric analysis and the surface properties were evaluated by light optical microscopy, scanning electron microscopy and atomic force microscopy. From mentioned characteristics, we conclude that presence of nanofiller in LDPE primarily causes shift of thermal degradation to higher temperatures and increasing of microhardness. All prepared LDPE nanocomposites possess an excellent and prolonged antifungal activity against Candida albicans.
机译:越来越多的留置医疗材料和设备与酵母菌,尤其是白色念珠菌引起的感染有关。这种病原体在合成材料上产生生物膜,这有助于有机体粘附到设备上,并使其对药物治疗相对难以耐受。由于抗菌聚合物纳米复合材料是一种很有前途的可能性,本研究探索了一种实现这一目标的新方法,即开发基于低密度聚乙烯(LDPE)的纳米复合材料,粘土矿物蛭石作为抗真菌化合物的活性载体。采用熔融复合法制备了LDPE/粘土纳米复合材料,增加了抗真菌纳米填料的用量。作为抗真菌剂,选择了常用的活性物质环吡咯烷胺,并通过超声波技术将该化合物装入天然蛭石中。通过X射线衍射分析和傅里叶变换红外光谱研究了所有制备样品的结构。通过热重分析进一步研究了聚乙烯/粘土纳米复合材料的热性能,并通过光学显微镜、扫描电子显微镜和原子力显微镜对其表面性能进行了评估。根据上述特征,我们得出结论,LDPE中纳米填料的存在主要导致热降解转移到更高的温度,并增加显微硬度。所有制备的LDPE纳米复合材料对白色念珠菌具有优异且持久的抗真菌活性。

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