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首页> 外文期刊>Analytical and bioanalytical chemistry >Investigation of the biotransformation of melarsoprol by electrochemistry coupled to complementary LC/ESI-MS and LC/ICP-MS analysis
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Investigation of the biotransformation of melarsoprol by electrochemistry coupled to complementary LC/ESI-MS and LC/ICP-MS analysis

机译:美拉美洛尔通过电化学与互补LC / ESI-MS和LC / ICP-MS分析的生物转化研究

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Melarsoprol is the only currently available drug for treatment of the late stage of African trypanosomiasis (sleeping sickness). Unfortunately, the arsenic-containing drug causes serious side effects, for which the mechanisms have not been elucidated so far. This investigation describes the study of the melarsoprol biotransformation processes by electrochemical (EC) techniques. Based on EC, potential oxidation reactions of melarsoprol are examined. Moreover, the reactivity of melarsoprol, its metabolite melarsen oxide, and their oxidation products toward the tripeptide glutathione and the proteins hemoglobin and human serum albumin is evaluated. The combination of different analytical techniques allows the identification as well as the quantification of the biotransformation products. The hyphenation of liquid chromatography (LC) and electrospray ionization mass spectrometry (ESI-MS) is applied for identification and structure elucidation, which implies the determination of exact masses and fragmentation patterns. For the selective detection of arsenic containing metabolites, LC coupled to inductively coupled plasma mass spectrometry is utilized. Based on the obtained data, the oxidative biotransformation of melarsoprol can be predicted, revealing novel species which have been suspected, but not been identified up to now. The results of the protein studies prove that melarsen oxide, the active derivative of melarsoprol, strongly binds to human hemoglobin and forms different adducts via the free cysteinyl groups of the hemoglobin α- and β-chain.
机译:美拉索洛是目前唯一可用于治疗非洲锥虫病(昏睡病)晚期的药物。不幸的是,含砷药物会引起严重的副作用,迄今为止尚未阐明其机理。这项研究描述了通过电化学(EC)技术对美拉索尔生物转化过程的研究。基于EC,研究了美索罗尔的潜在氧化反应。此外,还评估了美拉莫洛,其代谢产物美拉森氧化物及其氧化产物对三肽谷胱甘肽,蛋白质血红蛋白和人血清白蛋白的反应性。不同分析技术的结合可以对生物转化产物进行鉴定和定量。液相色谱(LC)和电喷雾电离质谱(ESI-MS)的联用技术用于鉴定和结构解析,这意味着要确定准确的质量和碎片模式。为了选择性检测含砷的代谢物,使用了电感耦合等离子体质谱联用的LC。根据获得的数据,可以预测美拉索洛的氧化生物转化,揭示出怀疑但尚未发现的新物种。蛋白质研究的结果证明,美拉酚的活性衍生物美拉生氧化物与人血红蛋白牢固结合,并通过血红蛋白α和β链的半胱氨酸基团形成不同的加合物。

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