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分离的橙花叔醇、法呢醇和 α- 倍半水芹醇的抗菌和外排泵抑制活性比较及其脂质体纳米制剂。

Comparative Antibacterial and Efflux Pump Inhibitory Activity of Isolated Nerolidol, Farnesol, and α-Bisabolol Sesquiterpenes and Their Liposomal Nanoformulations.

机构信息

Departamento de Antibióticos, Universidade Federal de Pernambuco (UFPE), Recife 50670-901, Brazil.

Departament of Biological Chemistry, Universidade Regional do Cariri (URCA), Crato 63105-010, Brazil.

出版信息

Molecules. 2023 Nov 17;28(22):7649. doi: 10.3390/molecules28227649.

Abstract

The efflux systems are considered important mechanisms of bacterial resistance due to their ability to extrude various antibiotics. Several naturally occurring compounds, such as sesquiterpenes, have demonstrated antibacterial activity and the ability to inhibit efflux pumps in resistant strains. Therefore, the objective of this research was to analyze the antibacterial and inhibitory activity of the efflux systems NorA, Tet(K), MsrA, and MepA by sesquiterpenes nerolidol, farnesol, and α-bisabolol, used either individually or in liposomal nanoformulation, against multi-resistant strains. The methodology consisted of in vitro testing of the ability of sesquiterpenes to reduce the Minimum Inhibitory Concentration (MIC) and enhance the action of antibiotics and ethidium bromide (EtBr) in broth microdilution assays. The following strains were used: 1199B carrying the NorA efflux pump, resistant to norfloxacin; IS-58 strain carrying Tet(K), resistant to tetracyclines; RN4220 carrying MsrA, conferring resistance to erythromycin. For the EtBr fluorescence measurement test, K2068 carrying MepA was used. It was observed the individual sesquiterpenes exhibited better antibacterial activity as well as efflux pump inhibition. Farnesol showed the lowest MIC of 16.5 µg/mL against the RN4220 strain. Isolated nerolidol stood out for reducing the MIC of EtBr to 5 µg/mL in the 1199B strain, yielding better results than the positive control CCCP, indicating strong evidence of NorA inhibition. The liposome formulations did not show promising results, except for liposome/farnesol, which reduced the MIC of EtBr against 1199B and RN4220. Further research is needed to evaluate the mechanisms of action involved in the inhibition of resistance mechanisms by the tested compounds.

摘要

外排系统因其能够排出各种抗生素而被认为是细菌耐药的重要机制。几种天然化合物,如倍半萜烯,已表现出抗菌活性,并能够抑制耐药菌株中的外排泵。因此,本研究的目的是分析诺拉菌素、四氢叶酸(Tet(K))、MsrA 和 MepA 外排泵的抗菌和抑制活性,使用单独或脂质体纳米制剂形式的法尼醇、香叶醇和α- 姜黄烯,针对多耐药菌株。该方法包括体外测试萜烯降低最小抑菌浓度(MIC)和增强抗生素和溴化乙锭(EtBr)在肉汤微量稀释测定中的作用的能力。使用了以下菌株:携带 NorA 外排泵的 1199B,对诺氟沙星耐药;携带 Tet(K)的 IS-58 菌株,对四环素耐药;携带 MsrA 的 RN4220,对红霉素耐药。对于 EtBr 荧光测量试验,使用了携带 MepA 的 K2068。观察到单独的倍半萜烯表现出更好的抗菌活性和外排泵抑制作用。法尼醇对 RN4220 菌株的 MIC 最低为 16.5 µg/mL。分离出的橙花叔醇在降低 1199B 菌株中 EtBr 的 MIC 方面表现出色,达到 5 µg/mL,优于阳性对照 CCCP,表明对 NorA 的抑制作用很强。脂质体制剂除了脂质体/法尼醇外,没有显示出有希望的结果,脂质体/法尼醇降低了 1199B 和 RN4220 对抗 EtBr 的 MIC。需要进一步研究评估测试化合物抑制耐药机制的作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c824/10675182/918ba9bd14ce/molecules-28-07649-g001.jpg

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