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结构对水缓冲液中吩噻嗪阳离子自由基反应的影响。

Effect of structure on phenothiazine cation radical reactions in aqueous buffers.

作者信息

Sackett P H, McCreery R L

出版信息

J Med Chem. 1979 Dec;22(12):1447-53. doi: 10.1021/jm00198a004.

Abstract

The reactions of the cation radicals of 11 phenothiazine tranquilizers were examined in mildly acidic aqueous buffers. Of the 11, those having an aminopropyl side chain in the 10 position reacted to form 0.5 mol of sulfoxide and 0.5 mol of parent drug per mole of initial radical. Cation radicals with different side chains react to form additional products, which remain to be identified but probably result from hydroxylation of the phenothiazine ring. The decay kinetics of three of the cation radicals undergoing reactions with known stoichiometry, namely, chloropromazine, promazine, and triflupromazine, were studied in detail, and it was concluded that they all react via the same mechanism. The mechanism involves attack of the cation radical by a nucleophile, and radicals with electron-withdrawing groups in the 2 position react more quickly. Since the cation radicals with faster reaction rates with nucleophiles are more pharmacologically active, it is hypothesized that the cation radical-nucleophile interaction may be responsible for binding of phenothiazines to receptor proteins.

摘要

在弱酸性水性缓冲液中研究了11种吩噻嗪类镇静剂阳离子自由基的反应。在这11种物质中,那些在10位具有氨丙基侧链的物质,每摩尔初始自由基反应生成0.5摩尔亚砜和0.5摩尔母体药物。具有不同侧链的阳离子自由基反应生成其他产物,这些产物有待鉴定,但可能是吩噻嗪环羟基化的结果。详细研究了三种按已知化学计量进行反应的阳离子自由基(即氯丙嗪、丙嗪和三氟丙嗪)的衰变动力学,得出它们均通过相同机制反应的结论。该机制涉及亲核试剂对阳离子自由基的攻击,并且在2位带有吸电子基团的自由基反应更快。由于与亲核试剂反应速率更快的阳离子自由基具有更高的药理活性,因此推测阳离子自由基与亲核试剂的相互作用可能是吩噻嗪类与受体蛋白结合的原因。

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