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氨曲南/阿维巴坦、黏菌素/阿普拉霉素和美罗培南/阿普拉霉素联合用药对产碳青霉烯酶的广泛耐药菌株有效性的研究。

Investigation of the Effectiveness of Aztreonam/Avibactam, Colistin/Apramycin, and Meropenem/Apramycin Combinations Against Carbapenemase-Producing, Extensively Drug-Resistant Strains.

作者信息

Kilic Umit, Koroglu Mehmet, Olmez Mehmet, Altindis Mustafa

机构信息

Faculty of Medicine, Sakarya University, Sakarya, Turkey.

出版信息

Microb Drug Resist. 2020 May 14. doi: 10.1089/mdr.2019.0498.

Abstract

This study aimed at investigating the effectiveness of aztreonam/avibactam, colistin/avibactam, colistin/apramycin, and meropenem/apramycin combinations against carbapenemase-producing, extensively drug-resistant (XDR) strains. This study evaluated 38 carbapenem-resistant, carbapenemase-producing, and XDR strains. The checkerboard method was used to examine the efficacy of aztreonam/avibactam, and meropenem/apramycin combinations in all strains and the colistin/apramycin combination in colistin-resistant strains ( = 26). It was found that when used alone, aztreonam and avibactam had high minimum inhibitory concentration values in all strains and that all strains were resistant to aztreonam. Nevertheless, the aztreonam/avibactam combination was found to have a synergistic effect against all strains. Apramycin alone was effective against 30 strains (79%); however, 8 strains (21%) were found to be resistant. In the synergy testing of 26 colistin-resistant strains with the checkerboard method, the colistin/apramycin combination was found to have a synergistic effect against 4 strains (15.3%), an antagonistic effect against 8 strains (30.7%), and an additive effect against 14 strains (54%). By comparison, the meropenem/apramycin combination had a synergistic effect against 20 strains (52%) and an additive effect against 12 strains (31%). The aztreonam/avibactam combination showed a high synergistic effect on carbapenemase-producing and XDR strains, such as Metallo-β-lactamase, and provided good prospects for the successful treatment. The meropenem/apramycin combination was also highly synergistic. The synergistic effects were low for the colistin/apramycin combination that was tested on colistin-resistant strains. However, it is promising that apramycin has low minimal inhibitory concentration values.

摘要

本研究旨在调查氨曲南/阿维巴坦、黏菌素/阿维巴坦、黏菌素/阿普拉霉素和美罗培南/阿普拉霉素联合用药对产碳青霉烯酶的广泛耐药(XDR)菌株的有效性。本研究评估了38株耐碳青霉烯类、产碳青霉烯酶的XDR菌株。采用棋盘法检测氨曲南/阿维巴坦和美罗培南/阿普拉霉素联合用药对所有菌株的疗效,以及黏菌素/阿普拉霉素联合用药对耐黏菌素菌株(n = 26)的疗效。结果发现,单独使用时,氨曲南和阿维巴坦在所有菌株中均具有较高的最低抑菌浓度值,且所有菌株对氨曲南均耐药。然而,发现氨曲南/阿维巴坦联合用药对所有菌株均有协同作用。单独使用阿普拉霉素对30株菌株(79%)有效;然而,发现8株菌株(21%)耐药。在对26株耐黏菌素菌株进行棋盘法协同试验时,发现黏菌素/阿普拉霉素联合用药对4株菌株(15.3%)有协同作用,对8株菌株(30.7%)有拮抗作用,对14株菌株(54%)有相加作用。相比之下,美罗培南/阿普拉霉素联合用药对20株菌株(52%)有协同作用,对12株菌株(31%)有相加作用。氨曲南/阿维巴坦联合用药对产碳青霉烯酶的XDR菌株,如金属β-内酰胺酶,显示出较高的协同作用,为成功治疗提供了良好前景。美罗培南/阿普拉霉素联合用药也具有高度协同作用。对耐黏菌素菌株进行测试的黏菌素/阿普拉霉素联合用药的协同作用较低。然而,阿普拉霉素具有较低的最低抑菌浓度值,这是有前景的。

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