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黏菌素的药敏试验:使用扫描电子显微镜的新型定量和形态学检测方法的扩展应用

Antimicrobial Susceptibility Testing for Colistin: Extended Application of Novel Quantitative and Morphologic Assay Using Scanning Electron Microscopy.

作者信息

Zmerli Omar, Bellali Sara, Haddad Gabriel, Iwaza Rim, Hisada Akiko, Matsumoto Erino, Ominami Yusuke, Raoult Didier, Bou Khalil Jacques

机构信息

Institut Hospitalo-Universitaire Méditerranée-Infection, Marseille, France.

Aix-Marseille Université, Institut de Recherche pour le Développement (IRD), UMR Microbes Evolution Phylogeny and Infections (MEPHI), Marseille, France.

出版信息

Int J Microbiol. 2024 May 25;2024:8917136. doi: 10.1155/2024/8917136. eCollection 2024.

Abstract

BACKGROUND

Colistin (Polymyxin E) has reemerged in the treatment of MDR Gram-negative infections. Traditional Colistin AST methods have long turnaround times and are cumbersome for routine use. We present a SEM-AST technique enabling rapid detection of Colistin resistance through direct observation of morphological and quantitative changes in bacteria exposed to Colistin.

METHODS

Forty-four Gram-negative reference organisms were chosen based on their Colistin susceptibility profiles. Bacterial suspensions of ∼10 CFU/mL were exposed to Colistin at EUCAST-ECOFF, with controls not exposed, incubated at 37°C, and then sampled at 0, 15, 30, 60, and 120 minutes. Phosphotungstic Acid (PTA) staining was applied, followed by SEM imaging using Hitachi TM4000PlusII-Tabletop-SEM at ×2000, ×5000 and ×7000 magnifications. Bacterial viability analysis was performed for all conditions by quantifying viable and dead organisms based on PTA-staining and morphologic changes.

RESULTS

We identified a significant drop in the percentage of viable organisms starting 30 minutes after exposure in susceptible strains, as compared to nonsignificant changes in resistant strains across all tested organisms. The killing effect of Colistin was best observed after 120 minutes of incubation with the antibiotic, with significant changes in morphologic features, including bacterial inflation, fusion, and lysis, observed as early as 30 minutes. Our observation matched the results of the gold standard-based broth microdilution method.

CONCLUSIONS

We provide an extended application of the proof of concept for the utilization of the SEM-AST assay for Colistin for a number of clinically relevant bacterial species, providing a rapid and reliable susceptibility profile for a critical antibiotic.

摘要

背景

黏菌素(多黏菌素E)已重新用于耐多药革兰氏阴性菌感染的治疗。传统的黏菌素药敏试验方法周转时间长,常规使用繁琐。我们提出一种扫描电子显微镜药敏试验(SEM-AST)技术,通过直接观察暴露于黏菌素的细菌的形态和数量变化,能够快速检测黏菌素耐药性。

方法

根据44种革兰氏阴性参考菌株的黏菌素敏感性谱进行选择。将约10 CFU/mL的细菌悬液在欧盟CAST-ECOFF规定的黏菌素浓度下进行暴露处理,设置未暴露的对照组,在37°C下孵育,然后在0、15、30、60和120分钟时取样。应用磷钨酸(PTA)染色,随后使用日立TM4000PlusII桌面扫描电子显微镜在2000倍、5000倍和7000倍放大倍数下进行SEM成像。通过基于PTA染色和形态变化对活菌和死菌进行定量分析,对所有条件下的细菌活力进行分析。

结果

我们发现,与所有测试菌株中耐药菌株的无显著变化相比,敏感菌株在暴露30分钟后活菌百分比显著下降。在用抗生素孵育120分钟后,黏菌素的杀菌效果最为明显,早在30分钟时就观察到形态特征的显著变化,包括细菌膨胀、融合和裂解。我们的观察结果与基于金标准的肉汤微量稀释法的结果相符。

结论

我们为SEM-AST法检测黏菌素的概念验证提供了扩展应用,适用于多种临床相关细菌物种,为一种关键抗生素提供了快速可靠的药敏谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcbc/11144066/ea7ee3f7c33f/IJMICRO2024-8917136.001.jpg

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