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生物膜及静止期浮游细胞中的抗生素耐受性 。 你提供的原文似乎不完整,请补充完整以便我能准确翻译。

Antibiotic Tolerance in Biofilm and Stationary-Phase Planktonic Cells of .

作者信息

Kamble Ekta, Pardesi Karishma

机构信息

Department of Microbiology, Savitribai Phule Pune University, Pune, India.

出版信息

Microb Drug Resist. 2021 Jan;27(1):3-12. doi: 10.1089/mdr.2019.0425. Epub 2020 Feb 3.

Abstract

The ability of to form biofilms and persisters is a major cause of recalcitrant infections that are difficult to treat. We have examined time-dependent variation in persister population present in stationary-phase planktonic cells and biofilms of when treated with bactericidal antibiotics having different cellular targets. Fourteen isolates identified as were found to be resistant to three to nine classes of antibiotics tested according to the CLSI guidelines. Among the sensitive isolates, S48 was found to be the strongest biofilm producer, whereas J6 was the weakest. The four antibiotics, ciprofloxacin, daptomycin, tobramycin, and vancomycin, inhibited biofilm formation, whereas daptomycin was the strongest in disrupting 24-hr-old biofilm. Treatment of stationary-phase planktonic cells with 100 × minimum inhibitory concentration (MIC) of these antibiotics showed a typical biphasic pattern indicating the presence of persister cells. Twenty-four-hour-old biofilm of the two isolates tested at 100 × MIC of the antibiotics showed a similar biphasic pattern. Tolerance of biofilm cells was greater as compared with planktonic cells, which could be due to elevated number of persisters found in the biofilm as compared with planktonic cells.

摘要

形成生物膜和持留菌的能力是导致难治性感染的主要原因,这些感染难以治疗。我们研究了在使用具有不同细胞靶点的杀菌抗生素处理时,处于稳定期浮游细胞和生物膜中的持留菌群体随时间的变化。根据CLSI指南,14株鉴定为[具体菌名未给出]的分离株对三到九类测试抗生素具有抗性。在敏感分离株中,S48被发现是最强的生物膜形成者,而J6是最弱的。环丙沙星、达托霉素、妥布霉素和万古霉素这四种抗生素抑制生物膜形成,而达托霉素在破坏24小时龄生物膜方面最强。用这些抗生素的100倍最小抑菌浓度(MIC)处理稳定期浮游细胞显示出典型的双相模式,表明存在持留菌细胞。在抗生素的100倍MIC下测试的两种分离株的24小时龄生物膜显示出类似的双相模式。与浮游细胞相比,生物膜细胞的耐受性更高,这可能是因为与浮游细胞相比,生物膜中发现的持留菌数量增加。

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