Biologically synthesized Copper Nanoparticles from S. epidermidis on resistant S. aureus and cytotoxic assay

Zahraa H. Kadhim1, Mais E. Ahmed, Ilker Simsek
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Abstract

The risk of significant concern is resistance to antibiotics for public health. The alternative treatment of metallic nanoparticles (NPs), such as heavy metals, effects on antibiotic resistance bacteria with different types of antibiotics of - impossible to treat using noval eco-friendly synthesis technique nanoparticles copper oxide (CuO NPs) preparation from S. epidermidis showed remarkable antimicrobial activity against S.aureus Minimum inhibitory concentra range (16,32,64,256,512) µg/ml via well diffusion method in vitro, discover those concentrations effected in those bacteria and the best concentration is 64 µg/ml, characterization CuO NPs to prove this included atomic force microscope, UV, X-ray Diffraction and TEM, and anticancer activity was tested against cell membrane A375. The cell viability was decreased with increasing the CuNPs. It displayed a dose-dependent sequence of progressive cytotoxicity beginning at a lower concentration to its maximum inhibition (22)% inhibition of HdFn cells and (66)% inhibition of A375 cells. Keywords: CuO NPs, Green Synthesis, A375cells.
表皮葡萄球菌生物合成铜纳米颗粒对耐药金黄色葡萄球菌的作用及细胞毒性测定
引起重大关注的风险是对公共卫生的抗生素耐药性。金属纳米颗粒(NPs)对不同类型抗生素耐药菌(如重金属)的替代处理效果——采用新型环保合成技术无法对不同类型抗生素进行处理——表皮葡萄球菌纳米颗粒氧化铜(CuO NPs)对金黄色葡萄球菌具有显著的抑菌活性,体外孔扩散法抑菌浓度最低(16、32、64、256,512)µg/ml;通过原子力显微镜、紫外显微镜、x射线衍射显微镜和透射电镜对CuO NPs进行了表征,并对细胞膜A375进行了抗癌活性测试,发现CuO NPs的最佳浓度为64µg/ml。细胞活力随CuNPs的增加而降低。从较低浓度开始,到对hdf细胞的最大抑制作用(22)%,对A375细胞的抑制作用(66)%,显示出剂量依赖性的进行性细胞毒性序列。关键词:CuO NPs,绿色合成,a375细胞
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