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Application of laser scanning for the rapid and automated detection of bacteria in water samples

机译:激光扫描在快速自动检测水样中细菌中的应用

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It is widely accepted that the heterotrophic plate count method may not support the growth of all viable bacteria which may be present within a water sample and that alternative procedures using 'viability markers' may yield additional information. In this study, ChemChrome B (CB), which is converted to a fluorescent product by esterase activity, was used to stain viable bacteria (captured by membrane filtration) from potable water samples. The labelled bacteria from each sample were subsequently enumerated using a novel laser scanning instrument (ChemScan). Analysis of 107 potable water samples using this procedure demonstrated the presence of a significantly greater number of bacteria than were detected by culture (z-test, P < 0.05). The mean number of bacteria isolated by culture on R_2A agar incubated at 22 deg C for 7 d was only 25.2% of the total number of viable bacteria detected using the CB/ChemScan viability assay. Further analysis of 81 water samples using a 5-cyano-2,3,4-tolyl-tetrazolium chloride (CTC) viability assay also demonstrated the presence of many viable bacteria which were not capable of growth under the culture conditions employed in this study. However, the results indicate that ChemChrome B has the ability to stain a significantly greater number of heterotrophs than CTC (z-test, P < 0.05). In contrast, six potable waters were identified in which the CTC viability assay resulted in counts greater than those obtained using CB. The ChemScan instrument was successfully used for rapid and accurate enumeration of labelled micro-organisms, allowing information on the total viable microbial load of a water sample to be determined within 1 h. Furthermore, the ChemScan system has the potential for use in detecting specific organisms labelled with fluorescently-labelled antibodies or nucleic acid probes.
机译:异养平板计数法可能无法支持水样品中可能存在的所有活菌的生长,并且使用“生存力标记”的替代程序可能会产生其他信息,这一点已被广泛接受。在这项研究中,通过酯酶活性转化为荧光产物的ChemChrome B(CB)被用于对饮用水样品中的活细菌(通过膜过滤捕获)进行染色。随后使用新型激光扫描仪(ChemScan)枚举每个样品中的标记细菌。使用此程序对107个饮用水样品进行的分析表明,存在的细菌数量明显多于通过培养物检测到的细菌(z检验,P <0.05)。通过在R_2A琼脂上于22℃孵育7 d培养而分离出的平均细菌数仅占使用CB / ChemScan生存力测定法检测到的存活细菌总数的25.2%。使用5-氰基-2,3,4-甲苯基四唑鎓氯化物(CTC)活力测定法对81个水样品进行的进一步分析还表明存在许多在本研究采用的培养条件下无法生长的活菌。但是,结果表明,ChemChrome B具有比CTC染色大量异养菌的能力(z检验,P <0.05)。相反,确定了六种饮用水,其中CTC活力测定的计数大于使用CB获得的计数。 ChemScan仪器成功地用于快速准确地枚举标记的微生物,从而可以在1小时内确定水样中总微生物载量的信息。此外,ChemScan系统有潜力用于检测被荧光标记的抗体或核酸探针标记的特定生物。

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