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氧化锌纳米颗粒与多种抗生素联合使用对临床分离菌株的协同作用。

Synergistic effects of zinc oxide nanoparticles and various antibiotics combination against clinically isolated bacterial strains.

作者信息

Fadwa Alshareef O, Alkoblan Dena K, Mateen Ayesha, Albarag Ahmed M

机构信息

Department of Clinical Laboratory Science, College of Applied Medical Science, King Saud University, Riyadh, Saudi Arabia.

Department of Pathology, College of Medicine, King Saud University, Riyadh, Saudi Arabia.

出版信息

Saudi J Biol Sci. 2021 Jan;28(1):928-935. doi: 10.1016/j.sjbs.2020.09.064. Epub 2020 Oct 29.

Abstract

causes mostly both community-acquired and nosocomial infections, which leads to serious therapeutic challenges for treatment and requirement of appropriate therapeutic agent is needed which can combat antibiotic resistance. The research work was performed to investigate the effect of Zinc Oxide nanoparticles (ZnO NPs) in combination with Meropenem, Ciprofloxacin, and Colistin against clinical isolated strains of and ATCC 27853 strain. The minimum inhibitory concentration (MIC) of ZnO NPs and the antibiotics (Meropenem, Ciprofloxacin, and Colistin), was determined by the microdilution method and the results of MIC values were ranging between 1 and 16 µg/mL was found to be shown for antibiotics and ZnO NPs found to showed highest MIC values ranging from 2000 to 4000 µg/mL. The fractional inhibitory concentration index (FICI) was calculated using checkerboard method to test the combinations of ZnO NPs and the antibiotics (Meropenem, Ciprofloxacin, and Colistin), and among all the six clinical isolated strains (MRO-16-3 and MRO-16-4), showed FICI as 0.24 and 0.39 9, whereas ATCC 27853 strain showed FICI as 0.41 which indicates synergistic effect with Colistin. The time kill growth curve showed synergistic effect for the combination of Colistin and ZnO NPs against (MRO-16-3 and MRO-16-) strains. (MRO-16-3) was found to be highly sensitive to Colistin with an MIC of 2 µg/mL, which has shown to reduced bacterial growth to zero colonies after 24 h of incubation. In conclusion, combination of Colistin and ZnO NPs at appropriate dosage intervals might be beneficial as using therapeutic agent in treatment of ailments.

摘要

它主要引起社区获得性感染和医院感染,这给治疗带来了严峻的挑战,需要有能够对抗抗生素耐药性的合适治疗药物。开展这项研究工作是为了探究氧化锌纳米颗粒(ZnO NPs)与美罗培南、环丙沙星和黏菌素联合使用对临床分离菌株以及ATCC 27853菌株的作用。通过微量稀释法测定了ZnO NPs以及抗生素(美罗培南、环丙沙星和黏菌素)的最低抑菌浓度(MIC),结果发现抗生素的MIC值在1至16μg/mL之间,而ZnO NPs的MIC值最高,在2000至4000μg/mL之间。使用棋盘法计算分数抑菌浓度指数(FICI),以测试ZnO NPs与抗生素(美罗培南、环丙沙星和黏菌素)的联合效果,在所有6株临床分离菌株(MRO - 16 - 3和MRO - 16 - 4)中,FICI分别为0.24和0.39,而ATCC 27853菌株的FICI为0.41,这表明与黏菌素具有协同作用。时间 - 杀菌生长曲线显示黏菌素与ZnO NPs联合使用对(MRO - 16 - 3和MRO - 16 -)菌株具有协同作用。(MRO - 16 - 3)对黏菌素高度敏感,MIC为2μg/mL,在培养24小时后细菌生长减少至零菌落。总之,以适当的剂量间隔联合使用黏菌素和ZnO NPs作为治疗药物可能对治疗相关疾病有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5202/7785452/9f7ceb668ea4/gr1.jpg

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