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Silicone Based Nanocomposite for Treatment of Hydrocephalus

机译:基于硅氧烷的纳米复合物用于治疗脑积水

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The effective and enhanced antimicrobial activity of silver-clay nanohybrid structure is attributed to the large surface area and homogeneous dispersion of silver nanoparticles on clay platelets. Based on preliminary studies, we have developed a longer lasting solution to significantly reduce both cell growth and bacterial infection. The approach to reduce bacterial colonization involves the incorporation of novel silver-based nanoclay in silicone in a manner to obtain higher antimicrobial efficiency and homogenous protection of silicone shunt surface. On the other hand, to reduce growth, impregnate silicone with antiproliferative paclitaxel. The unique and controlled antimicrobial properties of silver-clay nanohybrid and antiproliferative characteristic of paclitaxel would make them ideal materials in silicone for dual-action of effectively reducing infection and cell growth.
机译:银粘土纳米组织结构的有效和增强的抗微生物活性归因于银纳米粒子对粘土血小板的大表面积和均匀分散。基于初步研究,我们开发了更持久的解决方案,以显着降低细胞生长和细菌感染。减少细菌定植的方法涉及在硅氧烷中加入新的银基纳米粘土以获得更高的抗微生物效率和硅氧烷分流表面的均匀保护。另一方面,为了减少生长,用抗溶剂紫杉醇浸渍硅氧烷。紫杉醇的银粘土纳米油和抗增殖特性的独特且受控的抗微生物性能将使它们在有效减少感染和细胞生长的双作用中的硅氧烷中理想的材料。

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