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Investigation into the Physiological State of Heat Stressed Escherichia coli Used in the Evaluation Testing of an Intrinsic Fluorescence-Based RMM

机译:在基于内在荧光的RMM评估测试中使用的热应激大肠杆菌的生理状态研究

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Rapid microbiological methods (RMMs) have been used as novel quality control technologies in industry. The ability of RMMs to detect stressed bacteria, in particular, is of continued interest due to the limitations of the conventional method in stressed bacteria detection. Accordingly, there is a need to better characterize an RMM's ability to detect stressed microorganisms. Previously we reported on the detection ability of an intrinsic fluorescence-based RMM using a 50% injured (determined based on colony-forming ability) bacterial cell group after heat treatment at 55 degrees C for 8 min. In this study, we added further information about the physiological state of the heat treated Escherichia coli, besides proliferation ability, by investigating respiratory activity using CTC fluorescent staining and expression of DnaK, a heat shock protein. It was found that 89% of cells (control 96%) retained respiratory activity, but only 20% (control 41%) retained proliferation ability after heat treatment. The difference between the percentage of cells with respiratory activity versus that of cells still capable of proliferation further supports the existence of viable but non-culturable stressed cells in the test sample. Also, we suggest such analysis would be one approach to confirming the use of stressed as opposed to dead cells when evaluating an RMM's ability to detect stressed microorganisms.
机译:快速微生物方法(RMMS)已被用作工业中的新型质量控制技术。特别是RMMS检测应激细菌的能力是持续的兴趣,因为常规方法在应激细菌检测中的局限性。因此,需要更好地表征RMM检测压力微生物的能力。以前我们报道了使用50%损伤的基于荧光的RMM的检测能力(基于菌落形成能力测定)细菌细胞组在55℃下在55℃下进行8分钟。在这项研究中,除了使用CTC荧光染色和DNAK的表达,热休克蛋白的表达来研究呼吸活性,还添加了关于热处理大肠杆菌的生理状态的进一步信息。发现89%的细胞(对照96%)保留了呼吸系统活性,但在热处理后仅为20%(对照41%)保留的增殖能力。具有呼吸活性的细胞百分比与仍然能够增殖的细胞的百分比进一步支持在试样中存在可行但非培养的应激细胞的存在。此外,我们建议这种分析是一种方法,即在评估RMM检测压力微生物的能力时确认使用压力而不是死细胞的方法。

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