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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Reaction between the anesthetic agent propofol and the free radical DPPH in semiaqueous media: kinetics and characterization of the products.
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Reaction between the anesthetic agent propofol and the free radical DPPH in semiaqueous media: kinetics and characterization of the products.

机译:麻醉剂丙泊酚和自由基DPPH在半水介质中的反应:动力学和产物表征。

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摘要

The reaction of the free radical diphenylpicrylhydrazyl (DPPH ) with the anesthetic agent 2,6-diisopropylphenol (propofol, PPF) was investigated in buffered hydroalcoholic media. The kinetics was followed using a stopped-flow system. DPPH was reduced to the hydrazine analogue DPPH-H with a measured stoichiometry (DPPH /PPF) of 2. The main product of the reaction, 3,5,3',5'-tetraisopropyl-(4,4')-diphenoquinone (PPFDQ) was isolated by chromatography and its structure was fully characterized. The reaction mechanism was inferred from the stoichiometry, kinetics, and product identification. The first step, which primarily determines the kinetics, is the reaction of DPPH with PPF to produce DPPH-H and the PPF radical. The rate constant was found to be 31.8, 207, and 908 M(-1) s(-1) at pH 6.4, 7.4, and 8.4, respectively. The pH dependence is indicative of a higher reactivity of the phenolate form of PPF. Then, PPF radicals combine to form dipropofol, which is quickly oxidized to PPFDQ by the remaining DPPH . This reaction scheme is corroborated by numerical simulations of the kinetics. In the course of this study we also disclosed an unexpected effect, the photochemical degradation of PPFDQ. The need to compare antioxidants on a kinetics basis is again emphasized. In our hands, PPF presents a significantly weaker reactivity than Trolox.
机译:在缓冲的水醇介质中研究了自由基二苯基吡啶甲基肼基(DPPH)与麻醉剂2,6-二异丙基苯酚(丙泊酚,PPF)的反应。使用停止流系统追踪动力学。将DPPH还原为肼类似物DPPH-H,化学计量比(DPPH / PPF)为2。反应的主要产物3,5,3',5'-四异丙基-(4,4')-联苯醌(通过色谱分离(PPFDQ),并充分表征其结构。从化学计量,动力学和产物鉴定推断反应机理。第一步主要决定动力学,是DPPH与PPF反应生成DPPH-H和PPF自由基。发现在pH 6.4、7.4和8.4时速率常数分别为31.8、207和908 M(-1)s(-1)。 pH依赖性表明PPF的酚盐形式具有更高的反应性。然后,PPF自由基结合形成双丙泊酚,然后被剩余的DPPH迅速氧化成PPFDQ。该反应方案通过动力学的数值模拟得到证实。在这项研究过程中,我们还披露了意想不到的效果,即PPFDQ的光化学降解。再次强调需要在动力学基础上比较抗氧化剂。在我们手中,PPF的反应活性比Trolox弱得多。

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