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药用植物生物合成氧化锌纳米粒子对大肠杆菌和肺炎克雷伯菌的协同与抗氧化作用研究。

Investigations on Synergistic and Antioxidant Actions of Medicinal Plant- Based Biosynthesis of Zinc Oxide Nanoparticles Against E.coli and K. pneumonia Bacteria.

机构信息

Department of Zoology, Faculty of Natural Sciences, Lahore College for Women University, Lahore, Pakistan.

Department of Physics, University of Sahiwal, Sahiwal, 57000, Pakistan.

出版信息

Comb Chem High Throughput Screen. 2022;25(7):1200-1206. doi: 10.2174/1386207324666210302102111.

Abstract

INTRODUCTION

Bacterial resistance to multiple drugs is increasing at an alarming rate in the current era and nanotechnology is one of the effective and novel approaches to overcome drug resistance.

METHODS

Zinc Oxide Nanoparticles (ZnO NPs) have stronger antibacterial activity and are regarded as bio-safe nanomaterial. The aim of the present study is to synthesize the ZnO NPs using Aloe vera leaves extract and to investigate the synergistic effects and antioxidant actions of biosynthesized ZnO NPs against gram-negative bacteria E.coli and K. pneumoniae. The synergistic effect of β-lactam antibiotics (meropenem and ciprofloxacin) was tested along with ZnO NPs using Kirby's disc diffusion assay. The antioxidant activity was investigated by α, α-diphenyl-β- picrylhydrazyl (DPPH) method.

RESULTS

Results of the study revealed that the antibacterial activity of the selected antibiotics was much enhanced by ZnO NPs than the antibiotics alone. The resistant antibiotic (ciprofloxacin) became sensitive when combined with ZnO NPs. The antioxidant activity reveals that biosynthesized ZnO NPs possess significantly higher (p<0.05) antioxidant activity (77%).

CONCLUSION

The findings reveal that biosynthesized ZnO NPs have a much more eco-friendly approach. It can act as a strong potentiator of β-lactam antibiotics and put forward the possibility to use them effectively in targeted drug delivery, pharmaceuticals and biomedical fields.

摘要

简介

在当前时代,细菌对多种药物的耐药性正在以惊人的速度增长,纳米技术是克服耐药性的有效且新颖的方法之一。

方法

氧化锌纳米粒子(ZnO NPs)具有更强的抗菌活性,被认为是生物安全的纳米材料。本研究的目的是使用库拉索芦荟叶提取物合成 ZnO NPs,并研究生物合成的 ZnO NPs 对革兰氏阴性菌大肠杆菌和肺炎克雷伯菌的协同作用和抗氧化作用。使用 Kirby 圆盘扩散测定法测试了β-内酰胺抗生素(美罗培南和环丙沙星)与 ZnO NPs 的协同作用。通过α、α-二苯基-β- picrylhydrazyl(DPPH)法研究了抗氧化活性。

结果

研究结果表明,与单独使用抗生素相比,ZnO NPs 大大增强了所选抗生素的抗菌活性。与 ZnO NPs 联合使用时,耐药抗生素(环丙沙星)变得敏感。抗氧化活性表明,生物合成的 ZnO NPs 具有显著更高的(p<0.05)抗氧化活性(77%)。

结论

研究结果表明,生物合成的 ZnO NPs 是一种更环保的方法。它可以作为β-内酰胺类抗生素的强大增效剂,并提出将其有效用于靶向药物输送、制药和生物医学领域的可能性。

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