Medical Mycology and Bacteriology Research Center, Kerman University of Medical Sciences, Kerman, 7616913555, Iran.
Department of Chemistry, Faculty of Nano and Bio Science and Technology, Persian Gulf University, Bushehr, 75168, Iran.
Bioprocess Biosyst Eng. 2024 Nov;47(11):1915-1928. doi: 10.1007/s00449-024-03077-2. Epub 2024 Aug 10.
This research investigated the physicochemical properties and biological activities of green-synthesized copper oxide nanoparticles (CuO NPs) via Moringa peregrina extract, graphene oxide (GO), and their composite (CuO-GO). SEM revealed the morphology and structure, indicating polygonal CuO NPs, thin wrinkled sheets of GO, and a combination of CuO NPs and GO in the nanocomposite. EDS confirmed the elemental composition and distribution. XRD analysis confirmed the crystalline monoclinic structure of CuO NPs and GO, as well as their composite, CuO-GO, with characteristic peaks. DLS analysis exhibited distinct size distributions, with CuO NPs showing the narrowest range. BET surface area analysis revealed mesoporous structures for all materials, with the nanocomposite showing enhanced surface area and pore volume. Anticancer assays on MCF-7 and normal NIH/3T3 cells demonstrated CuO-GO's superior cytotoxicity against cancer cells, with minimal effects on normal cells, suggesting selective cytotoxicity. Moreover, antibacterial assays against Pseudomonas aeruginosa and Staphylococcus aureus indicated CuO-GO's potent inhibitory activity. The composite's synergistic effects were evidenced by its lower minimum inhibitory concentration (MIC) compared to individual components. In conclusion, this study elucidated the promising biomedical applications of CuO NPs, GO, and their nanocomposite, particularly in cancer treatment and antibacterial therapies, showcasing their potential as multifunctional nanomaterials.
这项研究通过辣木提取物、氧化石墨烯(GO)及其复合材料(CuO-GO),探究了绿色合成氧化铜纳米粒子(CuO NPs)的物理化学性质和生物活性。SEM 揭示了形貌和结构,表明了多角形的 CuO NPs、GO 的薄皱片状结构以及 CuO NPs 和 GO 的纳米复合材料。EDS 确认了元素组成和分布。XRD 分析证实了 CuO NPs 和 GO 以及它们的复合材料 CuO-GO 的结晶单斜结构,以及具有特征峰的结构。DLS 分析显示了明显的尺寸分布,其中 CuO NPs 显示出最窄的范围。BET 表面积分析显示所有材料均具有介孔结构,纳米复合材料显示出增强的表面积和孔体积。对 MCF-7 和正常 NIH/3T3 细胞的抗癌试验表明,CuO-GO 对癌细胞具有优异的细胞毒性,对正常细胞的影响最小,表明其具有选择性细胞毒性。此外,对铜绿假单胞菌和金黄色葡萄球菌的抗菌试验表明,CuO-GO 具有很强的抑制活性。与单个成分相比,复合材料具有更低的最小抑菌浓度(MIC),这证明了其协同效应。总之,这项研究阐明了 CuO NPs、GO 及其纳米复合材料在癌症治疗和抗菌治疗等生物医学应用方面的广阔前景,展示了它们作为多功能纳米材料的潜力。