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一种结合卡尔加里生物膜设备和表型微阵列的新型方法,用于研究细菌生物膜的化学敏感性。

A novel approach combining the Calgary Biofilm Device and Phenotype MicroArray for the characterization of the chemical sensitivity of bacterial biofilms.

机构信息

Dipartimento di Biotecnologie Agrarie - sezione di Microbiologia and Laboratorio Genexpress, Università degli Studi di Firenze, Florence, Italy.

出版信息

Biofouling. 2012;28(9):1023-32. doi: 10.1080/08927014.2012.726352.

Abstract

A rapid method for screening the metabolic susceptibility of biofilms to toxic compounds was developed by combining the Calgary Biofilm Device (MBEC device) and Phenotype MicroArray (PM) technology. The method was developed using Pseudomonas alcaliphila 34, a Cr(VI)-hyper-resistant bacterium, as the test organism. P. alcaliphila produced a robust biofilm after incubation for 16 h, reaching the maximum value after incubation for 24 h (9.4 × 10(6) ± 3.3 × 10(6) CFU peg(-1)). In order to detect the metabolic activity of cells in the biofilm, dye E (5×) and menadione sodium bisulphate (100 μM) were selected for redox detection chemistry, because they produced a high colorimetric yield in response to bacterial metabolism (340.4 ± 6.9 Omnilog Arbitrary Units). This combined approach, which avoids the limitations of traditional plate counts, was validated by testing the susceptibility of P. alcaliphila biofilm to 22 toxic compounds. For each compound the concentration level that significantly lowered the metabolic activity of the biofilm was identified. Chemical sensitivity analysis of the planktonic culture was also performed, allowing comparison of the metabolic susceptibility patterns of biofilm and planktonic cultures.

摘要

一种快速筛选生物膜对有毒化合物代谢易感性的方法是通过将卡尔加里生物膜设备(MBEC 设备)和表型微阵列(PM)技术相结合而开发的。该方法使用耐六价铬的假单胞菌 34 作为测试生物,假单胞菌 34 在孵育 16 小时后产生了一个强大的生物膜,在孵育 24 小时后达到最大值(9.4×10(6)±3.3×10(6)CFU 钉(-1))。为了检测生物膜中细胞的代谢活性,选择了染料 E(5×)和亚硫酸氢钠甲萘醌(100μM)进行氧化还原检测化学,因为它们对细菌代谢产生了高比色产率(340.4±6.9 Omnilog 任意单位)。这种组合方法避免了传统平板计数的局限性,通过测试假单胞菌 34 生物膜对 22 种有毒化合物的敏感性得到了验证。对于每种化合物,都确定了显著降低生物膜代谢活性的浓度水平。还对浮游培养物进行了化学敏感性分析,允许比较生物膜和浮游培养物的代谢易感性模式。

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