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在生理条件下调节锇(II)和钌(II)芳烃配合物的反应活性。

Tuning the reactivity of osmium(II) and ruthenium(II) arene complexes under physiological conditions.

作者信息

Peacock Anna F A, Habtemariam Abraha, Fernández Rafael, Walland Victoria, Fabbiani Francesca P A, Parsons Simon, Aird Rhona E, Jodrell Duncan I, Sadler Peter J

机构信息

Contribution from the School of Chemistry, University of Edinburgh, West Mains Road, Edinburgh EH9 3JJ, U.K.

出版信息

J Am Chem Soc. 2006 Feb 8;128(5):1739-48. doi: 10.1021/ja055886r.

Abstract

The Os(II) arene ethylenediamine (en) complexes [(eta(6)-biphenyl)Os(en)Cl][Z], Z = BPh(4) (4) and BF(4) (5), are inactive toward A2780 ovarian cancer cells despite 4 being isostructural with an active Ru(II) analogue, 4R. Hydrolysis of 5 occurred 40 times more slowly than 4R. The aqua adduct 5A has a low pK(a) (6.3) compared to that of (eta(6)-biphenyl)Ru(en)(OH(2)) (7.7) and is therefore largely in the hydroxo form at physiological pH. The rate and extent of reaction of 5 with 9-ethylguanine were also less than those of 4R. We replaced the neutral en ligand by anionic acetylacetonate (acac). The complexes [(eta(6)-arene)Os(acac)Cl], arene = biphenyl (6), benzene (7), and p-cymene (8), adopt piano-stool structures similar to those of the Ru(II) analogues and form weak dimers through intermolecular (arene)C-H...O(acac) H-bonds. Remarkably, these Os(II) acac complexes undergo rapid hydrolysis to produce not only the aqua adduct, (eta(6)-arene)Os(acac)(OH(2)), but also the hydroxo-bridged dimer, (eta(6)-arene)Os(mu(2)-OH)(3)Os(eta(6)-arene). The pK(a) values for the aqua adducts 6A, 7A, and 8A (7.1, 7.3, and 7.6, respectively) are lower than that for (eta(6)-p-cymene)Ru(acac)(OH(2)) (9.4). Complex 8A rapidly forms adducts with 9-ethylguanine and adenosine, but not with cytidine or thymidine. Despite their reactivity toward nucleobases, complexes 6-8 were inactive toward A549 lung cancer cells. This is attributable to rapid hydrolysis and formation of unreactive hydroxo-bridged dimers which, surprisingly, were the only species present in aqueous solution at biologically relevant concentrations. Hence, the choice of chelating ligand in Os(II) (and Ru(II)) arene complexes can have a dramatic effect on hydrolysis behavior and nucleobase binding and provides a means of tuning the reactivity and the potential for discovery of anticancer complexes.

摘要

尽管二价锇芳烃乙二胺(en)配合物[(η⁶ - 联苯)Os(en)Cl][Z](Z = BPh₄(4)和BF₄(5))与活性二价钌类似物4R具有同构性,但它们对A2780卵巢癌细胞无活性。5的水解速度比4R慢40倍。与[(η⁶ - 联苯)Ru(en)(OH₂)]²⁺(pKa = 7.7)相比,水合加合物5A的pKa较低(6.3),因此在生理pH下主要以羟基形式存在。5与9 - 乙基鸟嘌呤反应的速率和程度也低于4R。我们用阴离子乙酰丙酮(acac)取代了中性的en配体。[(η⁶ - 芳烃)Os(acac)Cl]配合物(芳烃 = 联苯(6)、苯(7)和对异丙基苯(8))采用类似于二价钌类似物的钢琴凳结构,并通过分子间(芳烃)C - H...O(acac)氢键形成弱二聚体。值得注意的是,这些二价锇acac配合物会快速水解,不仅生成水合加合物[(η⁶ - 芳烃)Os(acac)(OH₂)]⁺,还生成羟基桥联二聚体[(η⁶ - 芳烃)Os(μ₂ - OH)₃Os(η⁶ - 芳烃)]⁺。水合加合物6A、7A和8A的pKa值(分别为7.1、7.3和7.6)低于[(η⁶ - 对异丙基苯)Ru(acac)(OH₂)]⁺(9.4)。配合物8A能迅速与9 - 乙基鸟嘌呤和腺苷形成加合物,但不与胞苷或胸苷反应。尽管配合物6 - 8对核碱基有反应性,但它们对A549肺癌细胞无活性。这归因于快速水解和形成无反应性的羟基桥联二聚体,令人惊讶的是,在生物相关浓度下,这些二聚体是水溶液中仅有的物种。因此,在二价锇(和二价钌)芳烃配合物中选择螯合配体对水解行为和核碱基结合有显著影响,并提供了一种调节反应性和发现抗癌配合物潜力的方法。

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