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 â¼10(7)âCFU/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 120âminutes. Phosphotungstic Acid (PTA) staining was applied, followed by SEM imaging using Hitachi TM4000PlusII-Tabletop-SEM at Ã2000, Ã5000 and Ã7000 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 30âminutes 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 120âminutes of incubation with the antibiotic, with significant changes in morphologic features, including bacterial inflation, fusion, and lysis, observed as early as 30âminutes. 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.
Antimicrobial Susceptibility Testing for Colistin: Extended Application of Novel Quantitative and Morphologic Assay Using Scanning Electron Microscopy.
粘菌素抗菌药物敏感性测试:扫描电子显微镜新型定量和形态学检测的扩展应用
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作者:Zmerli Omar, Bellali Sara, Haddad Gabriel, Iwaza Rim, Hisada Akiko, Matsumoto Erino, Ominami Yusuke, Raoult Didier, Bou Khalil Jacques
| 期刊: | International Journal of Microbiology | 影响因子: | 3.200 |
| 时间: | 2024 | 起止号: | 2024 May 25; 2024:8917136 |
| doi: | 10.1155/2024/8917136 | 研究方向: | 微生物学 |
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