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Rapid Screening Method for Mycobactericidal Activity of Chemical Germicides That Uses Mycobacterium terrae Expressing a Green Fluorescent Protein Gene

机译:使用表达绿色荧光蛋白基因的分枝杆菌对化学杀菌剂的分枝杆菌活性的快速筛选方法

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摘要

The slow growth of mycobacteria in conventional culture methods impedes the testing of chemicals for mycobactericidal activity. An assay based on expression of the green fluorescent protein (GFP) by mycobacteria was developed as a rapid alternative. Plasmid pBEN, containing the gene encoding a red-shifted, high-intensity GFP mutant, was incorporated into Mycobacterium terrae (ATCC 15755), and GFP expression was observed by epifluorescence microscopy. Mycobactericidal activity was assessed by separately exposing a suspension of M. terrae(pBEN) to several dilutions of test germicides based on 7.5% hydrogen peroxide, 2.4% alkaline glutaraldehyde, 10% acid glutaraldehyde, and 15.5% of a phenolic agent for contact times ranging from 10 to 20 min (22°C), followed by culture of the exposed cells in broth (Middlebrook 7H9) and measurement of fluorescence every 24 h. When the fluorescence was to be compared with CFU, the samples were plated on Middlebrook 7H11 agar and incubated for 4 weeks. No increase in fluorescence or CFU occurred in cultures in which the cells had been inactivated by the germicide concentrations tested. Where the test bacterium was exposed to ineffective levels of the germicides, fluorescence increased after a lag period of 1 to 7 days, corresponding to the level of bacterial inactivation. In untreated controls, fluorescence increased rapidly to reach a peak in 2 to 4 days. A good Pearson correlation coefficient (r ≥0.85) was observed between the intensity of fluorescence and the number of CFU. The GFP-based fluorescence assay reduced the turnaround time in the screening of chemical germicides for mycobactericidal activity to ≤7 days.
机译:在常规培养方法中分枝杆菌的缓慢生长阻碍了化学物质对分枝杆菌活性的测试。发展了一种基于分枝杆菌表达绿色荧光蛋白(GFP)的检测方法,作为一种快速替代方法。将含有编码红移的高强度GFP突变体的基因的质粒pBEN掺入terra分枝杆菌(ATCC 15755),并通过落射荧光显微镜观察GFP的表达。分枝杆菌活性的评估是通过将terra。M.(pBEN)悬浮液分别暴露于几种稀释的测试杀菌剂中进行的,这些稀释剂基于7.5%的过氧化氢,2.4%的碱性戊二醛,10%的酸性戊二醛和15.5%的酚类,接触时间范围为从10到20分钟(22℃),然后在肉汤(Middlebrook 7H9)中培养暴露的细胞,每24小时测量一次荧光。当将荧光与CFU进行比较时,将样品铺在Middlebrook 7H11琼脂上并孵育4周。在通过测试的杀菌剂浓度使细胞失活的培养物中,荧光或CFU均未增加。在测试细菌暴露于无效水平的杀菌剂的情况下,荧光在滞后1至7天后增加,这与细菌灭活的水平相对应。在未经处理的对照中,荧光迅速增加,在2-4天达到峰值。在荧光强度和CFU数量之间观察到良好的Pearson相关系数(r≥0.85)。基于GFP的荧光测定将针对分枝杆菌活性的化学杀菌剂筛选的周转时间缩短至≤7天。

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