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Electrochemical recognition and quantification of cytochrome c expression in Bacillus subtilis and aerobe/anaerobe Escherichia coli using NNN′N′-tetramethyl-para-phenylene-diamine (TMPD)

机译:使用NNNN-四甲基-对亚苯基-二胺(TMPD)对枯草芽孢杆菌和需氧/厌氧大肠杆菌中细胞色素c表达进行电化学识别和定量

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摘要

The colorimetric identification of pathogenic and non-pathogenic bacteria in cell culture is commonly performed using the redox mediator N,N,N′,N′-tetramethyl-para-phenylene-diamine (TMPD) in the so-called oxidase test, which indicates the presence of bacterial cytochrome c oxidases. The presented study demonstrates the ability of electrochemistry to employ TMPD to detect bacteria and quantify the activity of bacterial cytochrome c oxidases. Cyclic voltammetry studies and chronoamperometry measurements performed on the model organism Bacillus subtilis result in a turnover number, calculated for single bacteria. Furthermore, trace amounts of cytochrome c oxidases were revealed in aerobically cultured Escherichia coli, which to our knowledge no other technique is currently able to quantify in molecular biology. The reported technique could be applied to a variety of pathogenic bacteria and has the potential to be employed in future biosensing technology.
机译:通常在氧化酶测试中使用氧化还原介体N,N,N',N'-四甲基-对亚苯基-二胺(TMPD)进行细胞培养中致病菌和非致病菌的比色鉴定。细菌细胞色素c氧化酶的存在。提出的研究证明了电化学利用TMPD检测细菌并量化细菌细胞色素c氧化酶活性的能力。对模型生物枯草芽孢杆菌进行循环伏安法研究和计时安培法测量得出的周转数是针对单个细菌计算的。此外,在需氧培养的大肠杆菌中发现了痕量的细胞色素C氧化酶,据我们所知,目前尚无其他技术能够在分子生物学中进行定量。报道的技术可以应用于多种致病细菌,并有可能在未来的生物传感技术中使用。

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