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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis and Biological Evaluation of Ru(II) and Pt(II) Complexes Bearing Carboxyl Groups as Potential Anticancer Targeted Drugs
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Synthesis and Biological Evaluation of Ru(II) and Pt(II) Complexes Bearing Carboxyl Groups as Potential Anticancer Targeted Drugs

机译:Ru(II)和Pt(II)复合物的合成和生物学评价携带羧基作为潜在的抗癌靶向药物

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The synthesis and characterization of Pt(II) (1 and 2) and Ru(II) arene (3 and 4) or polypyridine (5 and 6) complexes is described. With the aim of having a functional group to form bioconjugates, one uncoordinated carboxyl group has been introduced in all complexes. Some of the complexes were selected for their potential in photodynamic therapy (PDT). The molecular structures of complexes 2 and 5, as well as that of the sodium salt of the 4'-(4-carboxyphenyl)-2,2':6',2 ''-terpyridine ligand (cptpy), were determined by X-ray diffraction. Different techniques were used to evaluate the binding capacity to model DNA molecules, and MTT cytotoxicity assays were performed against four cell lines. Compounds 3, 4, and 5 showed little tendency to bind to DNA and exhibited poor biological activity. Compound 2 behaves as bonded to DNA probably through a covalent interaction, although its cytotoxicity was very low. Compound 1 and possibly 6, both of which contain a cptpy ligand, were able to intercalate with DNA, but toxicity was not observed for 6. However, compound 1 was active in all cell lines tested. Clonogenic assays and apoptosis induction studies were also performed on the PC-3 line for 1. The photodynamic behavior for complexes 1, 5, and 6 indicated that their nuclease activity was enhanced after irradiation at lambda = 447 nm. The cell viability was significantly reduced only in the case of 5. The different behavior in the absence or presence of light makes complex 5 a potential prodrug of interest in PDT. Molecular docking studies followed by molecular dynamics simulations for 1 and the counterpart without the carboxyl group confirmed the experimental data that pointed to an intercalation mechanism. The cytotoxicity of 1 and the potential of 5 in PDT make them good candidates for subsequent conjugation, through the carboxyl group, to "selected peptides" which could facilitate the selective vectorization of the complex toward receptors that are overexpressed in neopla
机译:描述了Pt(II)(1和2)和Ru(II)芳烃(3和4)或聚吡啶(5和6)络合物的合成和表征。目的是具有形成生物缀合物的官能团的目的,在所有复合物中都引入了一种不开羧基。选择一些复合物用于它们在光动力治疗(PDT)中的潜力。复合物2和5的分子结构以及4' - (4-羧基苯基)-2,2':6',2' - 吡啶配体(CPTPy)的钠盐的分子结构均由X确定 - 射线衍射。使用不同的技术来评估模拟DNA分子的结合能力,并针对四种细胞系进行MTT细胞毒性测定。化合物3,4和5表现出与DNA结合并表现出差的生物活性倾向。化合物2可能通过共价相互作用键合至DNA,尽管其细胞毒性非常低。化合物1和可能6,两者都含有CPTPy配体,能够与DNA嵌入,但未观察到毒性6.然而,在测试的所有细胞系中,化合物1活性化合物1。还在PC-3线上进行克隆基因测定和凋亡诱导研究1.复合物1,5和6的光动力学行为表明,在Lambda = 447nm的照射后,它们的核酸酶活性提高。仅在5的情况下显着降低细胞活力。在没有或存在光的情况下的不同行为使得复合体5在PDT中的潜在前药。分子对接研究,然后进行分子动力学模拟1和没有羧基的对应物证实了指向插入机制的实验数据。 1中的细胞毒性和PDT中的5的电位使它们通过羧基缀合的良好候选物,通过羧基,“选定的肽”,其可以促进络合物的选择性升值在尼普拉中过表达的受体

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