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基于钌(II)芳烃配合物与2-芳基二唑配体的抗癌特性推导构效关系

Derivation of structure-activity relationships from the anticancer properties of ruthenium(II) arene complexes with 2-aryldiazole ligands.

作者信息

Martínez-Alonso Marta, Busto Natalia, Jalón Félix A, Manzano Blanca R, Leal José M, Rodríguez Ana M, García Begoña, Espino Gustavo

机构信息

Departamento de Química, Facultad de Ciencias, Universidad de Burgos , Plaza Misael Bañuelos s/n, 09001 Burgos, Spain.

出版信息

Inorg Chem. 2014 Oct 20;53(20):11274-88. doi: 10.1021/ic501865h. Epub 2014 Oct 10.

Abstract

The ligands 2-pyridin-2-yl-1H-benzimidazole (HL(1)), 1-methyl-2-pyridin-2-ylbenzimidazole (HL(2)), and 2-(1H-imidazol-2-yl)pyridine (HL(3)) and the proligand 2-phenyl-1H-benzimidazole (HL(4)) have been used to prepare five different types of new ruthenium(II) arene compounds: (i) monocationic complexes with the general formula [(η(6)-arene)RuCl(κ(2)-N,N-HL)]Y [HL = HL(1), HL(2), or HL(3); Y = Cl or BF4; arene = 2-phenoxyethanol (phoxet), benzene (bz), or p-cymene (p-cym)]; (ii) dicationic aqua complexes of the formula (η(6)-arene)Ru(OH2)(κ(2)-N,N-HL(1))2 (Y = Cl or TfO; arene = phoxet, bz, or p-cym); (iii) the nucleobase derivative (η(6)-arene)Ru(9-MeG)(κ(2)-N,N-HL(1))2 (9-MeG = 9-methylguanine); (iv) neutral complexes consistent with the formulation [(η(6)-arene)RuCl(κ(2)-N,N-L(1))] (arene = bz or p-cym); (v) the neutral cyclometalated complex [(η(6)-p-cym)RuCl(κ(2)-N,C-L(4))]. The cytototoxic activity of the new ruthenium(II) arene compounds has been evaluated in several cell lines (MCR-5, MCF-7, A2780, and A2780cis) in order to establish structure-activity relationships. Three of the compounds with the general formula [(η(6)-arene)RuCl(κ(2)-N,N-HL(1))]Cl differing in the arene moiety have been studied in depth in terms of thermodynamic dissociation constants, aquation kinetic constants, and DNA binding measurements. The biologically most active compound is the p-cym derivative, which strongly destabilizes the DNA double helix, whereas those with bz and phoxet have only a small effect on the stability of the DNA double helix. Moreover, the inhibitory activity of several compounds toward CDK1 has also been evaluated. The DNA binding ability of some of the studied compounds and their CDK1 inhibitory effect suggest a multitarget mechanism for their biological activity.

摘要

配体2-吡啶-2-基-1H-苯并咪唑(HL(1))、1-甲基-2-吡啶-2-基苯并咪唑(HL(2))、2-(1H-咪唑-2-基)吡啶(HL(3))和前体配体2-苯基-1H-苯并咪唑(HL(4))已用于制备五种不同类型的新型钌(II)芳烃化合物:(i)通式为[(η(6)-芳烃)RuCl(κ(2)-N,N-HL)]Y的单核阳离子配合物[HL = HL(1)、HL(2)或HL(3);Y = Cl或BF4;芳烃 = 2-苯氧基乙醇(phoxet)、苯(bz)或对异丙基苯(p-cym)];(ii)式为(η(6)-芳烃)Ru(OH2)(κ(2)-N,N-HL(1))2的双核阳离子水合配合物(Y = Cl或TfO;芳烃 = phoxet、bz或p-cym);(iii)核碱基衍生物(η(6)-芳烃)Ru(9-甲基鸟嘌呤)(κ(2)-N,N-HL(1))2(9-MeG = 9-甲基鸟嘌呤);(iv)符合[(η(6)-芳烃)RuCl(κ(2)-N,N-L(1))]形式的中性配合物(芳烃 = bz或p-cym);(v)中性环金属化配合物[(η(6)-p-cym)RuCl(κ(2)-N,C-L(4))]。已在几种细胞系(MCR-5、MCF-7、A2780和A2780cis)中评估了新型钌(II)芳烃化合物的细胞毒性活性,以建立构效关系。对三种通式为[(η(6)-芳烃)RuCl(κ(2)-N,N-HL(1))]Cl且芳烃部分不同的化合物,在热力学解离常数、水合动力学常数和DNA结合测量方面进行了深入研究。生物活性最高的化合物是对异丙基苯衍生物,它能强烈破坏DNA双螺旋的稳定性,而含苯和2-苯氧基乙醇的化合物对DNA双螺旋稳定性的影响较小。此外,还评估了几种化合物对CDK1的抑制活性。一些研究化合物的DNA结合能力及其对CDK1的抑制作用表明其生物活性具有多靶点机制。

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