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Voltammetric and spectrophotometric studies of toxic disinfection by-product 2,6-dichloro-1,4-benzoquinone and its behavior with DNA

机译:伏安和光谱光度测量的研究有害的消毒副产物2 6-dichloro-1 4-benzoquinone及其行为与DNA

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Water disinfection processes may generate several dangerous substances that can affect both human beings and the environment. As a known contaminant in drinking water, the compound 2,6-dichloro-1,4-benzoquinone (DCBQ) and its degradation products in aqueous solution are of continuing concern regarding environmental, biomedical, and technical applications. There is great interest in the development of analytical methods capable of elucidating the mechanisms of the interactions of DCBQ and its degradation products with the nucleic acids of living organisms. Here, a systematic voltammetric study employing a glassy carbon electrode was performed, for the first time, to investigate the redox properties of DCBQ and its interactions with double-stranded DNA (dsDNA). The DCBQ has a reversible process at pH range from 3.70 to 12.60 and pH-dependent until pH 9.20, resulting in the formation of a reversible oxidation product in a pH-dependent system to pH 6.00 at a glassy carbon electrode. By varying incubation time and pH of electrolyte solutions, DCBQ showed spontaneous degradation which was presented by the change of its electrochemical behavior in solution. The spontaneously degraded DCBQ underwent a reversible and pH-dependent process for 3.70 <= pH <= 6.00. By spectrophotometry experiments, the spontaneous decomposition of DCBQ in aqueous solution was verified. DCBQ interacted indirectly with dsDNA and its degradation product(s) interacted with the deoxyguanosine homopolynucleotide with release of guanine and adenine from the double helix, but no oxidative damage to the dsDNA by DCBQ or its product(s) was detected.
机译:水消毒过程可能产生一些危险物质可以影响人类人类和环境。饮用水中污染物的化合物2 6-dichloro-1 4-benzoquinone (DCBQ)及其降解产物的水溶液继续关注有关环境、生物医学和技术应用。极大的兴趣发展的分析能够阐明机制的方法DCBQ及其退化的交互与核酸的生活产品生物。雇佣一个玻璃碳电极,第一次调查DCBQ的氧化还原性质及其相互作用与双链DNA (dsDNA)。可逆过程在pH值从3.70到12.60不等pH-dependent直到pH值9.20,导致的可逆的氧化产物的形成在玻璃碳pH-dependent系统pH值6.00电极。电解液的解决方案,DCBQ显示自发的退化带来的改变其溶液中的电化学行为。自发退化DCBQ接受了可逆和pH-dependent过程3.70 < =pH值< = 6.00。自发分解DCBQ水解决方案是验证。与dsDNA及其降解产物(s)互动与脱氧鸟苷homopolynucleotide鸟嘌呤和释放腺嘌呤的双螺旋结构,但没有氧化损害dsDNA DCBQ或其产品(s)检测到。

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