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创新性下一代疗法在对抗多药耐药和多毒力大肠杆菌分离株中的应用:来自体外、体内和分子对接研究的见解。

Innovative next-generation therapies in combating multi-drug-resistant and multi-virulent Escherichia coli isolates: insights from in vitro, in vivo, and molecular docking studies.

机构信息

Department of Natural Products, Faculty of Pharmacy, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.

Centre for Artificial Intelligence in Precision Medicines, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.

出版信息

Appl Microbiol Biotechnol. 2022 Feb;106(4):1691-1703. doi: 10.1007/s00253-022-11781-w. Epub 2022 Feb 8.

Abstract

Despite notable advances in vaccine and antimicrobial therapies, treatment failure has been increasingly reported worldwide. Of note, multi-drug-resistant (MDR) Escherichia coli (E. coli) strains have a considerable share in the evolution of this crisis. So, current practice guidelines are directed towards complementary and alternative therapies. Therefore, we evaluated the antibacterial and antivirulence activities of curcumin, thymol, and eugenol essential oils (EOs) as well as EOs-EOs and EOs-antibiotics interactions on MDR and multi-virulent E. coli isolates. Unfortunately, MDR E. coli could be isolated with a prevalence rate of 95.6% (86/90). Additionally, the majority of our isolates harbored both fimH (95.6%) and ompA (91.1%) genes, and half of them (45/90) were multi-virulent. Interestingly, all the tested EOs, especially curcumin, exhibited inhibitory activities against all MDR and multi-virulent E. coli isolates. The addition of thymol enhanced the antibacterial activities of curcumin and eugenol. Moreover, the activities of piperacillin/tazobactam and imipenem were increased by adding any one of the tested EOs. Regarding the antivirulence activities of the tested EOs, the cell surfaces of treated E. coli isolates under transmission electron microscope (TEM) were uneven. The cells appeared damaged and lost their appendages. Furthermore, EOs strongly reduced the transcription of ompA and fimH genes. The antibacterial and antivirulence activities of the used EOs were confirmed by in silico and mice protection assays. Hereby, we introduced the promising uses of curcumin, thymol, and eugenol oils as complementary and alternative therapies for combating MDR and multi-virulent E. coli isolates. KEY POINTS: • Our promising results confirmed that we were right for renewed interest of EOs. • The EOs, especially curcumin, can be used to prevent treatment failure. • We supposed a new pharmaceutical formulation of antibiotic powders dissolved in EOs.

摘要

尽管疫苗和抗菌治疗有了显著进展,但全球范围内治疗失败的情况却越来越多。值得注意的是,多药耐药(MDR)大肠杆菌(E. coli)菌株在这场危机的演变中占有相当大的份额。因此,当前的实践指南指向了互补和替代疗法。因此,我们评估了姜黄素、百里香酚和丁子香酚精油(EOs)以及 EOs-EOs 和 EOs-抗生素相互作用对 MDR 和多毒力 E. coli 分离株的抗菌和抗病毒活性。不幸的是,MDR E. coli 的分离率高达 95.6%(86/90)。此外,我们的大多数分离株都携带 fimH(95.6%)和 ompA(91.1%)基因,其中一半(45/90)是多毒力的。有趣的是,所有测试的 EOs,特别是姜黄素,对所有 MDR 和多毒力 E. coli 分离株都表现出抑制活性。百里香的添加增强了姜黄素和丁子香酚的抗菌活性。此外,添加任何一种测试的 EOs 都可以提高哌拉西林/他唑巴坦和亚胺培南的活性。关于测试 EOs 的抗病毒活性,在透射电子显微镜(TEM)下,处理过的 E. coli 分离株的细胞表面不均匀。细胞受损,失去了附属物。此外,EOs 强烈降低了 ompA 和 fimH 基因的转录。通过计算机模拟和小鼠保护试验证实了所用 EOs 的抗菌和抗病毒活性。在这里,我们介绍了姜黄素、百里香酚和丁子香酚油作为治疗 MDR 和多毒力 E. coli 分离株的互补和替代疗法的有前途的用途。要点:• 我们有希望的结果证实,我们对 EOs 的重新关注是正确的。• EOs,特别是姜黄素,可以用来防止治疗失败。• 我们假设了一种新的抗生素粉末制剂,溶解在 EOs 中。

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