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Microbial Detection Method Based on Sensing Molecular Hydrogen

机译:基于感测分子氢的微生物检测方法

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A simple method for detecting bacteria, based on the time of hydrogen evolution, was developed and tested against various members of the Enterobacteriaceae group. The test system consisted of (i) two electrodes, platinum and a reference electrode, (ii) a buffer amplifier, and (iii) a strip-chart recorder. Hydrogen evolution was measured by an increase in voltage in the negative (cathodic) direction and recorded on a strip-chart recorder. Hydrogen response curves consisted of (i) a lag period, (ii) a period of rapid buildup in potential due to hydrogen, and (iii) a period of decline in potential. A linear relationship was established between inoculum size and the time hydrogen was detected (lag period). Lag times ranged from 1 h for 106 cells/ml to 7 h for 100 cells/ml. For each 10-fold decrease in inoculum, length of the lag period increased 60 to 70 min. Mean cell concentrations at the time of hydrogen evolution were 106/ml. Based on the linear relationship between inoculum size and lag period, these results indicate the potential application of the hydrogen-sensing method for rapidly detecting coliforms and other gas-producing microorganisms in a variety of clinical, food, and other samples.
机译:开发了一种基于氢气释放时间的简单细菌检测方法,并针对肠杆菌科的各个成员进行了测试。该测试系统由(i)两个电极,铂和一个参比电极,(ii)缓冲放大器和(iii)条形图记录仪组成。通过在负(阴极)方向上增加电压来测量析氢,并将其记录在带状图记录仪上。氢响应曲线由(i)滞后期,(ii)由于氢引起的电势快速建立和(iii)电势下降的时期组成。在接种量和检测到氢气的时间(滞后时间)之间建立了线性关系。滞后时间从106个细胞/毫升的1小时到100个细胞/毫升的7小时不等。接种量每减少10倍,滞后时间就会增加60至70分钟。析氢时的平均细胞浓度为106 / ml。基于接种量和滞后时间之间的线性关系,这些结果表明氢感测方法可用于快速检测各种临床,食品和其他样品中的大肠菌和其他产气微生物。

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