Department of Chemistry, Central Institute of Technology Kokrajhar (Deemed to be University, under MoE, Govt. of India), Kokrajhar, Assam, 783370, India.
Sci Rep. 2024 Aug 22;14(1):19506. doi: 10.1038/s41598-024-69847-w.
In the present study, green synthetic pathway was adapted to synthesize CuO-ZnO bimetallic nanoparticles (BNPs) using Eryngium foetidum leaf extract and their anti-cancer activity against MCF7 breast cancer cell lines, anti-microbial activity and in vitro anti-oxidant activity were evaluated. Various bio-active compounds present in leaf extract were responsible for the reduction of CuO-ZnO NPs from respective Cu and Zn metal precursors. In the present study, the involvement of bio-active compounds present in E. foetidum extract before and after green synthesis of BNPs were evaluated for the first time. Rod-shaped and spherical structural morphology of synthesized BNPs were revealed by using FESEM, TEM, and XRD analysis with particle size ranged from 7 to 23 nm with an average size of 16.49 nm. The distribution of Cu and Zn were confirmed by elemental mapping. The green synthesized CuO-ZnO NPs showed significant cytotoxic effect with the inhibition rate 89.20 ± 0.03% at concentration of 500 μg/mL. Again, good antioxidant activity with IC 0.253 mg/mL and antimicrobial activity of BNPs were also evaluated with the increasing order of MIC; E. coli (7.81 μg/mL) < B. subtilis (62.5 μg/mL) < S. aureus (31.25 μg/mL).
在本研究中,采用皱叶酸模叶提取物适应绿色合成途径来合成氧化铜-氧化锌双金属纳米粒子(BNPs),并评估了其对 MCF7 乳腺癌细胞系的抗癌活性、抗微生物活性和体外抗氧化活性。叶提取物中存在的各种生物活性化合物负责将氧化铜-氧化锌 NPs 从各自的 Cu 和 Zn 金属前体中还原出来。在本研究中,首次评估了皱叶酸模叶提取物在 BNPs 绿色合成前后的生物活性化合物的参与情况。FESEM、TEM 和 XRD 分析显示,合成的 BNPs 具有棒状和球形结构形态,粒径范围为 7 至 23nm,平均粒径为 16.49nm。通过元素映射证实了 Cu 和 Zn 的分布。绿色合成的氧化铜-氧化锌 NPs 在 500μg/mL 浓度下表现出显著的细胞毒性作用,抑制率为 89.20±0.03%。此外,还评估了 BNPs 的良好抗氧化活性,IC0.253mg/mL,以及抗菌活性,MIC 顺序依次为:大肠杆菌(7.81μg/mL)<枯草芽孢杆菌(62.5μg/mL)<金黄色葡萄球菌(31.25μg/mL)。