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双金属 Ag/Cu 掺入化学剥离的 MoS 纳米片中以增强其抗菌潜力:计算机分子对接研究。

Bimetallic Ag/Cu incorporated into chemically exfoliated MoS nanosheets to enhance its antibacterial potential: in silico molecular docking studies.

机构信息

Solar Cell Applications Research Lab, Department of Physics, Government College University Lahore, Punjab 54000 Pakistan.

出版信息

Nanotechnology. 2020 Apr 17;31(27):275704. doi: 10.1088/1361-6528/ab8087. Epub 2020 Mar 17.

DOI:10.1088/1361-6528/ab8087
PMID:32182604
Abstract

Bimetallic Ag and Cu (1:1 wt%) nanoparticles (NPs) were synthesized and annealed at temperatures of 400 °C, 600 °C, and 800 °C using chemical reduction techniques. High temperature annealed (at 800 °C) Ag:Cu sample ratios (5 and 10 wt%) were used to dope MoS. A wide variety of techniques including X-ray diffraction, Fourier transform infrared spectroscopy, field emission scanning, high resolution transmission electron microscopy, differential scanning calorimetry, thermogravimetric analysis, Raman, photoluminescence, and ultraviolet visible spectrophotometry were used to study the morphology, structure, functional groups, excitons recombination, and thermal and optical properties of both annealed and doped samples. The antimicrobial activity of the prepared products was tested on the MRSA-superbug with ciprofloxacin antibiotic as the reference drug. Statistically significant (P < 0.05) inhibition zones (mm) were recorded for the as-synthesized Ag-Cu, heat-treated samples at 400 °C, 600 °C, and 800 °C, doped Ag-Cu/MoS 5% and Ag-Cu/MoS 10% which ranged from 6.35-9.85 mm and 8.60-11.75 mm at (0.5, 1.0 mg 50 μl) concentrations compared with ciprofloxacin 12.55 mm and DIW 0 mm inhibition zones, respectively. Overall Ag-Cu NPs alone and with different temperature treatments showed less antibacterial efficacy compared with Ag-Cu/MoS 5% and 10%. Furthermore, molecular docking studies were employed to unveil the binding interaction pattern of NPs in the active pocket of β-lactamase enzyme suggested that it could be a potential inhibitor that could be further evaluated for its enzyme inhibition characteristics.

摘要

采用化学还原技术合成了双金属 Ag 和 Cu(1:1wt%)纳米粒子(NPs),并在 400°C、600°C 和 800°C 的温度下进行退火。使用高温退火(800°C)的 Ag:Cu 样品比(5 和 10wt%)来掺杂 MoS。使用多种技术,包括 X 射线衍射、傅里叶变换红外光谱、场发射扫描、高分辨率透射电子显微镜、差示扫描量热法、热重分析、拉曼、光致发光和紫外可见分光光度法,来研究退火和掺杂样品的形貌、结构、官能团、激子复合和热学光学性质。用环丙沙星抗生素作为参考药物,测试了所制备产物对 MRSA-超级细菌的抗菌活性。记录了所合成的 Ag-Cu、在 400°C、600°C 和 800°C 下热处理的样品、掺杂的 Ag-Cu/MoS 5%和 Ag-Cu/MoS 10%的抑菌圈(mm),在(0.5、1.0mg50μl)浓度下,范围分别为 6.35-9.85mm 和 8.60-11.75mm,与环丙沙星的 12.55mm 和 DIW 的 0mm 抑菌圈相比,有统计学意义(P<0.05)。总的来说,与 Ag-Cu/MoS 5%和 10%相比,单独的 Ag-Cu NPs 和不同温度处理的 Ag-Cu NPs 表现出的抗菌效果较差。此外,还进行了分子对接研究,以揭示 NPs 在β-内酰胺酶活性口袋中的结合相互作用模式,表明它可能是一种潜在的抑制剂,可以进一步评估其酶抑制特性。

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