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应用最小可能数法检测水样中的细菌:饮用水中多重耐药菌的检测。

Application of miniaturized most probable number method for bacterial detection in water samples: detection of multi-drug-resistant in drinking water.

机构信息

Department of Medical Laboratory Technology, STIKes Mitra Keluarga, Bekasi City, West Java Province, Indonesia E-mail:

Department of Medical Laboratory Technology, STIKes Mitra Keluarga, Bekasi City, West Java Province, Indonesia.

出版信息

J Water Health. 2024 Sep;22(9):1618-1627. doi: 10.2166/wh.2024.086. Epub 2024 Aug 16.

Abstract

The detection of bacterial contamination in drinking water is essential for monitoring the spread of foodborne diseases. We developed a simple, portable, and low-cost method of mini most probable number (mini MPN) to semi-enumerate bacterial suspension in water as a drinking water analogue. In this study, there is no significant difference between mini MPN and the standard method, technique plate count (TPC), at 10 and 100 CFU/ml suspension with a -value of 0.28. For the ease-of-use aspect of this method, we tested several variables to prove it can be mass-applied in society. The usage of a sterile-plastic pipette, sample inoculation conducted in a biosafety cabinet (BSC), the usage of a 3-month storage medium, and incubation temperature conducted at room temperature compared to aseptic standard laboratory technique showed -value > 0.05. In a trial for this method, we used commercialized drinking water for bacterial enumeration and characterization. We found multi-drug resistant (MDR) which was resistant to at least four antimicrobial classes, including aminoglycosides, penicillins, cephalosporin, and carbapenem. Vitek 2 Compact was used for bacterial identification and antimicrobial susceptibility testing. A virulence test in larvae showed strain D had a low virulence.

摘要

饮用水中细菌污染的检测对于监测食源性疾病的传播至关重要。我们开发了一种简单、便携、低成本的微型最可能数(mini MPN)方法,用于半定量水中细菌悬浮液,作为饮用水模拟物。在这项研究中,在 10 和 100 CFU/ml 悬浮液中,mini MPN 与标准方法——平板计数(TPC)之间没有显著差异,相关值为 0.28。为了提高该方法的易用性,我们测试了几个变量来证明它可以在社会上大规模应用。使用无菌塑料移液管、在生物安全柜(BSC)中进行样品接种、使用 3 个月的储存培养基以及在室温下进行孵育,与无菌标准实验室技术相比,相关值均大于 0.05。在该方法的试验中,我们使用商业化饮用水进行细菌计数和特征描述。我们发现了耐至少四种抗菌药物类别的多重耐药(MDR),包括氨基糖苷类、青霉素类、头孢菌素类和碳青霉烯类。Vitek 2 Compact 用于细菌鉴定和药敏试验。幼虫的毒力试验表明,D 株的毒力较低。

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