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Development of an in vitro assay, based on the biofilm ring test®, for rapid profiling of biofilm-growing bacteria

机译:基于生物膜环测试®的体外测定方法的开发,用于快速分析生物膜生长细菌

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摘要

Microbial biofilm represents a major virulence factor associated with chronic and recurrent infections. Pathogenic bacteria embedded in biofilms are highly resistant to environmental and chemical agents, including antibiotics and therefore difficult to eradicate. Thus, reliable tests to assess biofilm formation by bacterial strains as well as the impact of chemicals or antibiotics on biofilm formation represent desirable tools for a most effective therapeutic management and microbiological risk control. Current methods to evaluate biofilm formation are usually time-consuming, costly, and hardly applicable in the clinical setting. The aim of the present study was to develop and assess a simple and reliable in vitro procedure for the characterization of biofilm-producing bacterial strains for future clinical applications based on the BioFilm Ring Test (BRT) technology. The procedure developed for clinical testing (cBRT) can provide an accurate and timely (5 h) measurement of biofilm formation for the most common pathogenic bacteria seen in clinical practice. The results gathered by the cBRT assay were in agreement with the traditional crystal violet (CV) staining test, according to the K coefficient test (K = 0.623). However, the cBRT assay showed higher levels of specificity (92.2%) and accuracy (88.1%) as compared to CV The results indicate that this procedure offers an easy, rapid and robust assay to test microbial biofilm and a promising tool for clinical microbiology.
机译:微生物生物膜代表与慢性和复发感染相关的主要毒力因子。嵌入生物膜中的致病细菌对环境和化学试剂(包括抗生素)具有高度抵抗力,因此难以根除。因此,评估细菌菌株生物膜形成以及化学药品或抗生素对生物膜形成的影响的可靠测试代表了最有效的治疗管理和微生物风险控制的理想工具。当前评估生物膜形成的方法通常耗时,昂贵且几乎不适用于临床环境。本研究的目的是基于BioFilm环形测试(BRT)技术开发和评估一种简单可靠的体外程序,用于表征生物膜生产细菌菌株,以用于未来的临床应用。为临床测试(cBRT)开发的程序可以为临床实践中最常见的致病细菌提供准确,及时(5 h)的生物膜形成测量。根据K系数测试(K = 0.623),通过cBRT分析收集的结果与传统的结晶紫(CV)染色测试一致。但是,与CV相比,cBRT测定显示出更高的特异性(92.2%)和准确性(88.1%)。结果表明,该程序提供了一种简便,快速且可靠的测定方法来检测微生物生物膜,并为临床微生物学提供了有希望的工具。

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