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用于分析生物膜对氨苄青霉素敏感性的传感器系统。

Sensor system for analysis of biofilm sensitivity to ampicillin.

机构信息

Institute of Biochemistry and Physiology of Plants and Microorganisms - Subdivision of the Federal State Budgetary Research Institution Saratov Federal Scientific Centre of the Russian Academy of Sciences (IBPPM RAS), Saratov, 410049, Russia.

EloSystems GbR, 13407, Berlin, Germany.

出版信息

Appl Microbiol Biotechnol. 2024 Jan 24;108(1):172. doi: 10.1007/s00253-023-12831-7.

Abstract

The resistance of biofilms to antibiotics is a key factor that makes bacterial infections unsusceptible to antimicrobial therapy. The results of classical tests of cell sensitivity to antibiotics cannot be used to predict therapeutic success in infections associated with biofilm formation. We describe a simple and rapid method for the real-time evaluation of bacterial biofilm sensitivity to antibiotics, with Pseudomonas putida and ampicillin as examples. The method uses an electric biosensor to detect the difference between changes in the biofilm electric polarizability, thereby evaluating antibiotic sensitivity. The electric signals showed that P. putida biofilms were susceptible to ampicillin and that at high antibiotic concentrations, the biofilms differed markedly in their susceptibility (dose-dependent effect). The sensor also detected differences between biofilms before and after ampicillin treatment. The electric-signal changes enabled us to describe the physical picture of the processes occurring in bacterial biofilms in the presence of ampicillin. The approach used in this study is promising for evaluating the activity of various compounds against biofilms, because it permits a conclusion about the antibiotic sensitivity of biofilm bacteria to be made in real time and in a short period (analysis time, not longer than 20 min). An added strong point is that analysis can be done directly in liquid, without preliminary sample preparation. KEY POINTS: • Sensor system to analyze biofilm antimicrobial susceptibility is described. • The signal change depended on the ampicillin concentration (dose-dependent effect). • The sensor allows real-time determination of the antibiofilm effect of ampicillin.

摘要

生物膜对抗生素的耐药性是使细菌感染对抗菌治疗不敏感的一个关键因素。经典的细胞抗生素敏感性测试结果不能用于预测与生物膜形成相关的感染的治疗效果。我们描述了一种简单快速的实时评估细菌生物膜对抗生素敏感性的方法,以铜绿假单胞菌和氨苄青霉素为例。该方法使用电生物传感器检测生物膜电极化率变化的差异,从而评估抗生素敏感性。电信号表明,铜绿假单胞菌生物膜对氨苄青霉素敏感,并且在高抗生素浓度下,生物膜的敏感性有明显差异(剂量依赖性效应)。传感器还检测了氨苄青霉素处理前后生物膜之间的差异。电信号变化使我们能够描述氨苄青霉素存在时细菌生物膜中发生的过程的物理图像。本研究中使用的方法有望用于评估各种化合物对生物膜的活性,因为它可以实时和在短时间内(分析时间不超过 20 分钟)得出关于生物膜细菌对抗生素敏感性的结论。另一个优点是可以直接在液体中进行分析,而无需进行样品预处理。 要点: • 描述了用于分析生物膜抗菌药敏性的传感器系统。 • 信号变化取决于氨苄青霉素浓度(剂量依赖性效应)。 • 传感器允许实时确定氨苄青霉素的抗生物膜作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d19/10808281/3269c09b8802/253_2023_12831_Fig1_HTML.jpg

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