Refining Department, Egyptian Petroleum Research Institute (EPRI), Cairo, Egypt.
Department of Microbiology and Immunology, Faculty of Pharmacy, Galala University, New Galala City, Suez, Egypt; Drug Radiation Research Department, National Center for Radiation Research and Technology (NCRRT), Egyptian Atomic Energy Authority (EAEA), Cairo, Egypt; Chemical Engineering Department, Military Technical Collage (MTC), Egyptian Armed Forces, Cairo, Egypt.
Arch Biochem Biophys. 2023 Mar 1;736:109539. doi: 10.1016/j.abb.2023.109539. Epub 2023 Feb 4.
In this research, Orobanche aegyptiaca extract was utilized as an eco-friendly, and cost-effective green route for the construction of bimetallic silver-selenium nanoparticles (Ag-Se NPs). Bimetallic Ag-Se NPs were characterized by XRD, EDX, FTIR, HR-TEM, DLS, SEM/mapping and EDX studies. Antimicrobial, and antibiofilm potentials were tested against some selected pathogenic bacteria and unicellular fungi by ZOI, MIC, effect of UV exposure, and inhibition %. Reaction mechanism was assessed through membrane leakage assay and SEM imaging. HRTEM analysis confirmed the spherical nature and was ranged from 18.1 nm to 72.0 nm, and the avarage particle size is determined to be 30.58 nm. SEM imaging prove that bimetallic Ag-Se NPs presents as a bright particles, and both Ag and Se were distributed equally across O. aegyptiaca extract and Guar gum stabilizers. ZOI results showed that, bimetallic Ag-Se NPs have antimicrobial activity against S. aureus (20.0 nm), E. coli (18.5 nm), P. aeruginosa (12.6 nm), and C. albicans (18.2 nm). In addition, bimetallic Ag-Se NPs were able to inhibit the biofilm formation for S. aureus by 79.48%, for E. coli by 78.79%, for P. aeruginosa by 77.50%, and for C. albicans by 73.73%. Bimetallic Ag-Se NPs are an excellent disinfectant once it had excited by UV light. It was observed that the quantity of cellular protein discharged from S. aureus is directly proportional to the concentration of bimetallic Ag-Se NPs and found to be 244.21 μg/mL after the treatment with 1 mg/mL, which proves the antibacterial characteristics, and explains the creation of holes in the cell membrane of S. aureus producing in the oozing out of the proteins from the S. aureus cytoplasm. Based on the promising properties, they showed superior antimicrobial potential at low concentration (to avoid toxicity) and continued-phase durability, they may use in pharmaceutical and biomedical applications.
在这项研究中,利用列当提取物作为一种环保且经济高效的绿色途径来构建双金属银-硒纳米粒子(Ag-Se NPs)。通过 XRD、EDX、FTIR、HR-TEM、DLS、SEM/映射和 EDX 研究对双金属 Ag-Se NPs 进行了表征。通过 ZOI、MIC、UV 暴露效应和抑制%,对抗一些选定的致病菌和单细胞真菌进行了抗菌和抗生物膜潜力测试。通过膜渗漏测定和 SEM 成像评估反应机制。HRTEM 分析证实了球形性质,范围从 18.1nm 到 72.0nm,平均粒径确定为 30.58nm。SEM 成像证明双金属 Ag-Se NPs 呈亮颗粒状,Ag 和 Se 均匀分布在列当提取物和瓜尔胶稳定剂中。ZOI 结果表明,双金属 Ag-Se NPs 对金黄色葡萄球菌(20.0nm)、大肠杆菌(18.5nm)、铜绿假单胞菌(12.6nm)和白色念珠菌(18.2nm)具有抗菌活性。此外,双金属 Ag-Se NPs 能够抑制金黄色葡萄球菌生物膜形成 79.48%,大肠杆菌 78.79%,铜绿假单胞菌 77.50%,白色念珠菌 73.73%。双金属 Ag-Se NPs 在受到紫外线激发后是一种极好的消毒剂。观察到从金黄色葡萄球菌释放的细胞蛋白量与双金属 Ag-Se NPs 的浓度直接成正比,在 1mg/mL 处理后发现为 244.21μg/mL,这证明了其抗菌特性,并解释了在金黄色葡萄球菌细胞质中蛋白质渗出时在金黄色葡萄球菌细胞膜上形成孔的原因。基于其有前途的特性,它们在低浓度(避免毒性)和连续相耐久性下显示出优异的抗菌潜力,它们可能用于制药和生物医学应用。