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Rapid and cost-effective method for microorganism enumeration based on miniaturization of the conventional plate-counting technique

机译:基于微型化的传统计数板技术的快速,经济高效的微生物计数方法

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摘要

The conventional plate-counting technique, while still routinely used in laboratories requiring micro-organism screening or enumeration, remains time-consuming and tiresome for the operator when large numbers of samples are assayed. We developed a miniaturized method based on serial tenfold dilution of samples in 96-well micro-plates followed by multiple pour-plating into 24-well micro-plates with an agar overlay procedure, providing easy colony counting and interpretation. The accuracy, sensitivityand reproducibility of this miniaturized method were tested using the conventional plate-counting technique as reference for viability measurements of Escherichia coli cells submitted to a sub-lethal thermic stress, enumeration of lactic bacteria duringmilk fermentation, and analysis of the total aerobic flora, coliform and Staphylococcus aurem content of spoiled food No significant differences were found between the results obtained with our miniaturized method and the conventional one, regardless ofthe bacteria and media used. Providing a reduction in overall cost and handling time, this reliable miniaturized method should be useful for experiments involving large ranges of cell concentration as well as great numbers of samples and replicates.
机译:传统的计数板技术尽管仍在需要微生物筛查或计数的实验室中常规使用,但在分析大量样品时仍使操作人员既费时又费力。我们基于在96孔微板上连续十倍稀释样品,然后通过琼脂覆盖法多次倒入24孔微板上,开发了一种小型化方法,可轻松进行菌落计数和解释。使用常规的计数板技术测试该小型方法的准确性,灵敏性和可重复性,作为测定亚致死性热应激下大肠杆菌细胞活力,牛奶发酵过程中乳酸菌计数以及总需氧菌群分析的参考。 ,变质食品中大肠菌群和金黄色葡萄球菌的含量不论采用哪种细菌和培养基,我们的小型化方法与常规方法所得结果之间均无显着差异。这种可靠的小型化方法可降低总体成本和处理时间,对于涉及大范围细胞浓度以及大量样品和重复样品的实验应是有用的。

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