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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Kinetics and mechanism of the reduction of (ImH)[trans-RuCl4(dmso)(Im)] by ascorbic acid in acidic aqueous solution
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Kinetics and mechanism of the reduction of (ImH)[trans-RuCl4(dmso)(Im)] by ascorbic acid in acidic aqueous solution

机译:酸性水溶液中抗坏血酸还原(ImH)[反式RuCl4(dmso)(Im)]的动力学和机理

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摘要

A systematic study of the reduction of (ImH)[trans-RuCl4(dmso)(Im)] (NAMI-A; dmso is dimethyl sulfoxide, Im is imidazole), a promising antimetastasing agent entering phase II clinical trial, by L-ascorbic acid is reported. The rapid reduction of trans-[(RuCl4)-Cl-III(dmso)(Im)](-) results in formation of trans-[(RuCl4)-Cl-II(dmso)(Im)](2-) in acidic medium (pH = 5.0) and is followed by successive dissociation of the chloride ligands, which cannot be suppressed even in the presence of a large excess of chloride ions. The reduction of NAMI-A strongly depends on pH and is accelerated on increasing the pH. Over the small pH range 4.9-5.1, the reaction is quite pH-independent and the influence of temperature and pressure on the reaction could be studied. On the basis of the reported activation parameters and other experimental data, it is suggested that the redox process follows an outer-sphere electron transfer mechanism. A small contribution from a parallel reaction ascribed to inner-sphere reduction of aqua derivatives of NAMI-A, was found to be favored by lower concentrations of the NAMI-A complex and higher temperature. In the absence of an excess of chloride ions, the reduction process is catalyzed by the Ru(II) products being formed. The reduction of NAMI-A is also catalyzed by Cu(II) ions and the apparent catalytic rate constant was found to be 1.5 x 10(6) M-2 s(-1) stop at 25 degrees C.
机译:通过L-抗坏血酸减少(ImH)[反式RuCl4(dmso)(Im)](NAMI-A; dmso是二甲亚砜,Im是咪唑)的系统研究,这是一种有望进入II期临床试验的抗转移药有酸报道。反式-[(RuCl4)-Cl-III(dmso)(Im)](-)的快速还原导致反式-[(RuCl4)-Cl-II(dmso)(Im)](2-)的形成酸性介质(pH = 5.0),然后连续解离氯离子配体,即使存在大量氯离子也不能抑制。 NAMI-A的减少在很大程度上取决于pH值,并在增加pH值时加速。在较小的pH值4.9-5.1范围内,该反应与pH无关,并且可以研究温度和压力对反应的影响。根据报道的活化参数和其他实验数据,建议氧化还原过程遵循外层电子转移机制。 NAMP-A络合物的浓度较低和温度较高,有利于平行反应对NAMI-A的水衍生物的内球还原的贡献很小。在不存在过量氯离子的情况下,还原过程由形成的Ru(II)产物催化。 NAMI-A的还原也被Cu(II)离子催化,并且表观催化速率常数为1.5 x 10(6)M-2 s(-1),在25摄氏度下停止。

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