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首页> 外文期刊>Research on Chemical Intermediates >A pulse radiolysis study of free radicals formed by one-electron oxidation of the antimalarial drug pyronaridine
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A pulse radiolysis study of free radicals formed by one-electron oxidation of the antimalarial drug pyronaridine

机译:抗疟药吡咯烷的单电子氧化形成自由基的脉冲放射分解研究

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摘要

Free radicals from one-electron oxidation of the antimalarial drug pyronaridine have been studied by pulse radiolysis. The results show that pyronaridine is readily oxidised to an intermediate semi-iminoquine radical by inorganic and organic free radicals, including those derived from tryptophan and acetaminophen. The pyronaridine radical is rapidly reduced by both ascorbate and caffeic acid. The results indicate that the one-electron reduction potential of the pyronaridine radical at neutral pH lies between those of acetaminophen (707 mV) and caffeic acid (534 mV). The pyronaridine radical decays to produce the iminoquinone, detected by electrospray mass spectrometry, in a second-order process that density functional theory (DFT) calculations (UB3LYP/6-31+G*) suggest is a disproportionation reaction. Important calculated dimensions of pyronaridine, its phenoxyl and aminyl radical, as well as the iminoquinone, are presented.
机译:已经通过脉冲辐射分解研究了抗疟药吡喃甲醚的单电子氧化自由基。结果表明,吡喃芳烷很容易被无机和有机自由基(包括由色氨酸和对乙酰氨基酚衍生的自由基)氧化为中间的亚氨基喹啉自由基。抗坏血酸和咖啡酸都可以快速还原吡咯烷基。结果表明,在中性pH下,吡喃芳基自由基的单电子还原电位介于对乙酰氨基酚(707 mV)和咖啡酸(534 mV)之间。通过电喷雾质谱法检测到,吡咯烷基自由基衰变生成亚氨基醌,这是密度泛函理论(DFT)计算(UB3LYP / 6-31 + G *)认为是歧化反应的二级过程。提出了重要的吡咯烷,其苯氧基和氨基自由基以及亚氨基醌的计算尺寸。

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