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Novel Route of Synthesis of PCL-CuONPs Composites With Antimicrobial Properties:

机译:具有抗菌性能的PCL-CuONPs复合材料的合成新路线:

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Nanoparticles of metals can be toxic to bacteria, showing biocidal activities at low concentrations. Metal, oxide, or compounds based on copper are applied like antimicrobial agents. The capacity of integration of metallic nanoparticles in polymer matrices has improved the antimicrobial behavior, resulting in the search for composites with increased bactericidal properties. A polycaprolactone (PCL) film polymer with copper oxide nanoparticles (CuONPs) was prepared. Dynamic light scattering analysis showed the sizes from 88 to 97 nm of CuONPs. Scanning electron microscopy (SEM) revealed CuONPs with semispherical shapes with diameter 35 nm. The prepared PCL-CuONPs exhibited a nanoporous structure by SEM. The antibacterial applicability of the composite was evaluated to determine the minimum inhibitory concentration in 6 different bacteria and the experimental tests were carried by disk diffusion and spectrophotometric methods. The PCL-CuONPs exhibit a considerable antibacterial effect in gram-positive bacteria in contrast to gram-negative bacteria. The preparation of PCL-CuONPs was simple, fast, and low cost for practical application as wound dressings.
机译:金属的纳米粒子可能对细菌有毒,在低浓度下表现出杀生物活性。像抗菌剂一样使用金属,氧化物或基于铜的化合物。金属纳米颗粒在聚合物基质中的整合能力提高了抗菌性能,导致人们寻求具有增强杀菌性能的复合材料。制备了具有氧化铜纳米颗粒(CuONPs)的聚己内酯(PCL)薄膜聚合物。动态光散射分析显示CuONP的大小为88至97 nm。扫描电子显微镜(SEM)显示直径为35 nm的半球形CuONP。制备的PCL-CuONP通过SEM显示出纳米孔结构。评价复合材料的抗菌性,以确定在6种不同细菌中的最低抑菌浓度,并通过圆盘扩散法和分光光度法进行实验测试。与革兰氏阴性细菌相比,PCL-CuONPs在革兰氏阳性细菌中显示出显着的抗菌作用。 PCL-CuONPs的制备简单,快速且成本低廉,可作为伤口敷料的实际应用。

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