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首页> 外文期刊>Journal of Rapid Methods and Automation in Microbiology >Detection of viable bacteria cells by bioluminescence: A bioenergetic approach
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Detection of viable bacteria cells by bioluminescence: A bioenergetic approach

机译:通过生物发光检测活细菌细胞:一种生物能方法

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摘要

The cellular ATP content of fourteen freshly harvested bacteria including Bacillus, Campylobacter, Citrobacter, Escherichia, Lactobacillus, Listeria, Pediococcus, Pseudomonas, Salmonella, Streptococcus and Yersinia, was determined using a luciferin-luciferase bioluminescence approach. Incubation of bacteria with carbonyl cyanide meta-chlorophenyl hydrazone (CCCP), a membrane protonophore, prior to cell breakage substantially lowered the bioluminescence signals indicating a decrease of cellular ATP content. The addition of CCCP after cell breakage had no detectable effect on the ATP levels. This differential effect of CCCP was not observed using heat-killed bacteria, i.e., the ATP content was not affected by CCCP incubation. The CCCP effects on cellular ATP level were detectable in bacterial suspensions with concentrations ranging from 10(6) to 10(3) CFU/mL. Upon cold storage, the ATP content, but not the population of viable bacteria, decreased. The ATP content could be partially restored by the addition of glucose. ne ATP content restored by the addition of glucose was also sensitive to CCCP treatment. These results demonstrated that viable bacterial cells can be differentiated from dead cells by their responses to membrane protonophores.
机译:使用萤光素-萤光素酶生物发光法测定了包括芽孢杆菌属,弯曲杆菌属,柠檬酸杆菌属,埃希氏菌属,乳杆菌属,李斯特菌属,小球菌属,假单胞菌属,沙门氏菌属,链球菌属和耶尔森氏菌在内的十四种新鲜收获细菌的细胞ATP含量。在细胞破裂之前,将细菌与膜质子体羰基氰化物间氯苯基(CCCP)一起孵育,大大降低了生物发光信号,表明细胞中ATP含量降低。细胞破损后加入CCCP对ATP水平无可检测的影响。使用热灭活细菌未观察到CCCP的这种差异作用,即ATP含量不受CCCP孵育的影响。在浓度为10(6)至10(3)CFU / mL的细菌悬液中可检测到CCCP对细胞ATP水平的影响。冷藏后,ATP含量降低了,但存活细菌的数量却没有降低。通过添加葡萄糖可以部分地恢复ATP含量。通过添加葡萄糖恢复的ATP含量也对CCCP处理敏感。这些结果表明,活细菌细胞可以通过对膜质子载体的反应而与死细胞区分开。

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