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Generation of engineered core-shell antibiotic nanoparticles

机译:生成工程芯 - 壳抗生素纳米粒子

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Well-defined nanocomposite structures have received significant attention due to their superior combinatorial properties. Rational tuning of the core and shell of the nanostructure(s) can offer potent antibacterial activity. Such advanced core-shell nanocomposite methodologies allow not only the incorporation of antibacterial agents on the shell but also provide its stability and nurture antibacterial activity. Herein, antibiotic zinc oxide-curcumin (ZnO-Cum) core-shell nanoparticles for antibacterial application were synthesised. The ZnO-Cum core-shell nanoparticles were prepared by curcumin nanolayer deposition on zinc oxide nanoparticles via a sonication process. The resulting ZnO-Cum core-shell nanoparticles were spiracle in shape with a similar to 45 nm ZnO core and similar to 12 nm curcumin shell layer size, respectively, determined by transmission electron microscopy. X-ray diffraction analysis confirmed the formation of a core-shell crystal structure. Additionally, UV-DRS and ATR-FTIR spectral analysis support the existence of ZnO and curcumin in a core-shell nanocomposite. The antibacterial activities of nanoparticles developed were studied against Staphylococcus aureus and Streptococcus pneumoniae and Escherichia coli and Shigella dysenteriae bacterial stains using the diffusion method. A greater inhibition of the growth of Gram positive and negative bacteria was noticed upon treatment with core-shell ZnO and curcumin nanoparticles than the commercial antibiotic amoxicillin which indicates their antibacterial property. The findings of this study provide evidence that the zinc oxide-curcumin core-shell nanoparticles may be highly promising for antibacterial and biomedical applications.
机译:由于其优异的组合性质,定义纳米复合材料结构具有显着的关注。纳米结构的核心和壳体的合理调谐可以提供有效的抗菌活性。这种先进的核 - 壳纳米复合材料方法不仅允许掺入壳体上的抗菌剂,而且还提供其稳定性和培养抗菌活性。在此,合成了用于抗菌应用的抗生素氧化锌 - 姜黄素(ZnO-Cum)核壳纳米颗粒。通过超声处理过程通过姜黄素纳米颗粒沉积在氧化锌纳米颗粒上制备ZnO-Cum层壳纳米颗粒。由此得到的ZnO-Cud-壳纳米颗粒以类似于45nm ZnO核的形状旋转,并且分别通过透射电子显微镜测定的12nm姜黄素层尺寸。 X射线衍射分析证实了形成芯壳晶体结构的形成。另外,UV-DRS和ATR-FTIR光谱分析支持核 - 壳纳米复合材料中ZnO和姜黄素的存在。使用扩散方法对葡萄球菌和链球菌和血清菌和志贺卡菌和志贺卡菌和志皆氏菌和志皆氏菌和志皆氏菌和志皆氏菌和志皆氏菌和血氏菌菌和血清蛋白酶菌和志氏菌菌和志皆氏菌达氏菌抗菌活性进行了抗菌活性。在用核 - 壳ZnO和姜黄素纳米粒子的处理时注意到克革处理和阴性细菌的生长的更大抑制作用,而不是商业抗生素阿莫西林,这表明其抗菌性。本研究的结果提供了证据表明氧化锌 - 姜黄素核 - 壳纳米颗粒对于抗菌和生物医学应用可能具有高度前途。

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