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Bioelectrocatalytic detection of histamine using quinohemoprotein amine dehydrogenase and the native electron acceptor cytochrome c-550

机译:奎诺莫蛋白胺脱氢酶和天然电子受体细胞色素c-550的生物电催化检测组胺

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Bioelectrocatalytic sensor of histamine has been constructed using quinohemoprotein amine dehydrogenase (QH-AmDH) as an enzyme and its native electron acceptor cytochrome c-550 (Cyt c-550) as a mediator. Highly reversible electron transfer of Cyt c-550 is achieved at bis(4-pyridyl)disulfide-modified Au electrodes. The electron transfer from substrate-reduced QH-AmDH to oxidized Cyt c-550 is in the diffusion-controlled region. in spite of relatively small redox potential difference. QH-AmDH and Cvt c-550 can be co-entrapped on the electrode surface with a suitable dialysis membrane. As a result, Cyt c-550 is found to be an excellent mediator compared with other artificial ones. The sensor allows the histamine detection down to 500 nM (S/N = 3) and the linearity is retained up to 1.5 mM with a relative standard deviation of 4.8 % at 10 muM histamine (n = 6). The performance of the histamine biosensor is discussed in view of clinical chemistry. [References: 38]
机译:组胺的生物电催化传感器已经使用喹血红蛋白胺脱氢酶(QH-AmDH)作为酶和其天然电子受体细胞色素c-550(Cyt c-550)作为介体构建。 Cyt c-550的高度可逆的电子转移是在双(4-吡啶基)二硫化物修饰的Au电极上实现的。从底物还原的QH-AmDH到氧化的Cyt c-550的电子转移处于扩散控制区。尽管氧化还原电位差相对较小。 QH-AmDH和Cvt c-550可以用合适的透析膜共包埋在电极表面。结果,与其他人工合成的相比,Cyt c-550被认为是一种出色的介导剂。该传感器可检测低至500 nM的组胺(S / N = 3),在10μM组胺(n = 6)下,线性保持高达1.5 mM,相对标准偏差为4.8%。鉴于临床化学,讨论了组胺生物传感器的性能。 [参考:38]

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