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水溶性钌(II)和钌(III)卤化物-磷腈配合物(PTA = 1,3,5-三氮杂-7-磷杂金刚烷):化学和生物学性质。

Water-soluble Ru(II)- and Ru(III)-halide-PTA complexes (PTA=1,3,5-triaza-7-phosphaadamantane): Chemical and biological properties.

作者信息

Battistin F, Scaletti F, Balducci G, Pillozzi S, Arcangeli A, Messori L, Alessio E

机构信息

Department of Chemical and Pharmaceutical Sciences, University of Trieste, Via L. Giorgieri 1, 34127 Trieste, Italy.

Department of Chemistry "Ugo Schiff", University of Florence, Via della Lastruccia 3-13, 50019 Sesto Fiorentino, Florence, Italy.

出版信息

J Inorg Biochem. 2016 Jul;160:180-8. doi: 10.1016/j.jinorgbio.2016.02.009. Epub 2016 Feb 16.

Abstract

Four structurally related Ru(II)-halide-PTA complexes, of general formula trans- or cis-[Ru(PTA)4X2] (PTA=1,3,5-triaza-7-phosphaadamantane, X=Cl (1, 2), Br (3, 4), were prepared and characterized. Whereas compounds 1 and 2 are known, the corresponding bromo derivatives 3 and 4 are new. The Ru(III)-PTA compound trans-[RuCl4(PTAH)2]Cl (5, PTAH=PTA protonated at one N atom), structurally similar to the well-known Ru(III) anticancer drug candidates (Na)trans-[RuCl4(ind)2] (NKP-1339, ind=indazole) and (Him)trans-[RuCl4(dmso-S)(im)] (NAMI-A, im=imidazole), was also prepared and similarly investigated. Notably, the presence of PTA confers to all complexes an appreciable solubility in aqueous solutions at physiological pH. The chemical behavior of compounds 1-5 in water and in physiological buffer, their interactions with two model proteins - cytochrome c and ribonuclease A - as well as with a single strand oligonucleotide (5'-CGCGCG-3'), and their in vitro cytotoxicity against a human colon cancer cell line (HCT-116) and a myeloid leukemia (FLG 29.1) were investigated. Upon dissolution in the buffer, sequential halide replacement by water molecules was observed for complexes 1-4, with relatively slow kinetics, whereas the Ru(III) complex 5 is more inert. All tested compounds manifested moderate antiproliferative properties, the cis compounds 2 and 4 being slightly more active than the trans ones (1 and 3). Mass spectrometry experiments evidenced that all complexes exhibit a far higher reactivity towards the reference oligonucleotide than towards model proteins. The chemical and biological profiles of compounds 1-5 are compared to those of established ruthenium drug candidates in clinical development.

摘要

制备并表征了四种结构相关的Ru(II)-卤化物-PTA配合物,通式为反式或顺式-[Ru(PTA)₄X₂](PTA = 1,3,5-三氮杂-7-磷杂金刚烷,X = Cl (1, 2),Br (3, 4))。化合物1和2是已知的,而相应的溴代衍生物3和4是新的。制备了与著名的Ru(III)抗癌候选药物(Na)反式-[RuCl₄(吲)₂](NKP - 1339,吲 = 吲唑)和(Him)反式-[RuCl₄(dmso - S)(咪唑)](NAMI - A,咪唑 = 咪唑)结构相似的Ru(III)-PTA化合物反式-[RuCl₄(PTAH)₂]Cl(5,PTAH = 在一个N原子上质子化的PTA),并进行了类似的研究。值得注意的是,PTA的存在使所有配合物在生理pH值的水溶液中具有相当的溶解度。研究了化合物1 - 5在水和生理缓冲液中的化学行为、它们与两种模型蛋白——细胞色素c和核糖核酸酶A——以及与单链寡核苷酸(5'-CGCGCG-3')的相互作用,以及它们对人结肠癌细胞系(HCT - 116)和髓系白血病(FLG 29.1)的体外细胞毒性。在缓冲液中溶解后,观察到配合物1 - 4中卤化物被水分子依次取代,动力学相对较慢,而Ru(III)配合物5更惰性。所有测试化合物均表现出中等的抗增殖特性,顺式化合物2和4比反式化合物(1和3)活性略高。质谱实验证明,所有配合物对参考寡核苷酸的反应性远高于对模型蛋白的反应性。将化合物1 - 5的化学和生物学特征与临床开发中已有的钌候选药物进行了比较。

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