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salen 配体反式 Ti(IV)配合物的细胞毒性和水解:构效关系研究。

Cytotoxicity and hydrolysis of trans-Ti(IV) complexes of salen ligands: structure-activity relationship studies.

机构信息

Institute of Chemistry, The Hebrew University of Jerusalem, 91904, Jerusalem, Israel.

出版信息

Inorg Chem. 2012 Feb 6;51(3):1796-804. doi: 10.1021/ic202092u. Epub 2011 Dec 29.

Abstract

Eleven bis(dimethylphenolato) Ti(IV) complexes of salen ligands with different steric and electronic properties due to different aromatic substituents at the ortho and para positions are reported, and their cytotoxicity toward HT-29 and OVCAR-1 cells and its dependence on hydrolytic behavior are discussed. Eight complexes of this series were analyzed by X-ray crystallography, confirming the trans geometry of the labile ligands with otherwise relatively similar coordination features to those of cis-salan analogues. Relatively high and similar hydrolytic stability is observed for all complexes, with t(1/2) values for labile ligand hydrolysis of 2-11 h in 10% D(2)O solutions. In contrast, varying cytotoxicities were achieved, identifying selected members as the first trans-Ti(IV) complexes reported as anticancer agents. Steric bulk all around the complex diminished the activity, where a complex with no aromatic substitutions is especially active and complexes substituted particularly at the ortho positions are mostly inactive, including ortho-halogenated and ortho-tert-butylated, with one exception of the ortho-methoxylated complex demonstrating appreciable activity. In contrast, para-halogenation provided the complexes of highest cytotoxic activity in this series (IC(50) as low as 1.0 ± 0.3 μM), with activity exceeding that of cisplatin by up to 15-fold. Reaction of a representative complex with ortho-catechol yielded a "cis"-Ti(IV) complex following rearrangement of the salen ligand on the metal center, with highly similar coordination features and geometry to those of the catecholato salan analogues, suggesting that the complexes operate by similar mechanisms and rearrangement of the salen ligand may occur upon introduction of a suitable chelating target. In additional cytotoxicity measurements, a salen complex was preincubated in the biological medium for varying periods prior to cell addition, revealing that marked cytotoxicity of the salen complex is retained for longer preincubation periods relative to known Ti(IV) complexes, suggesting that the hydrolysis products may also induce cytotoxic effects, thus reducing stability concerns.

摘要

报道了 11 种具有不同空间位阻和电子性质的 Salen 配体的双(二甲基苯酚)Ti(IV)配合物,由于邻位和对位的取代基不同。讨论了它们对 HT-29 和 OVCAR-1 细胞的细胞毒性及其对水解行为的依赖性。该系列的 8 个配合物通过 X 射线晶体学进行了分析,证实了易位配体的反式几何结构,而其他配合物与顺式-salan 类似物具有相对相似的配位特征。所有配合物的水解稳定性相对较高且相似,在 10% D(2)O 溶液中易位配体水解的 t(1/2)值为 2-11 小时。相比之下,实现了不同的细胞毒性,鉴定出一些成员为报告的第一个作为抗癌剂的反式 Ti(IV)配合物。在整个配合物周围的空间位阻减小了活性,其中没有芳香取代基的配合物特别活跃,而对位取代的配合物大多没有活性,包括邻位卤化和邻位叔丁基化,只有一个邻位甲氧基化的配合物表现出可观的活性。相比之下,对位卤化提供了该系列中具有最高细胞毒性活性的配合物(IC(50)低至 1.0 ± 0.3 μM),其活性比顺铂高多达 15 倍。代表性配合物与邻苯二酚反应,在金属中心上 Salen 配体重排后生成“顺式”Ti(IV)配合物,具有与邻苯二酚 Salan 类似物非常相似的配位特征和几何形状,表明这些配合物通过类似的机制起作用,并且 Salen 配体的重排可能在引入合适的螯合靶标时发生。在其他细胞毒性测量中,在添加细胞之前,将 Salen 配合物在生物培养基中预孵育不同的时间,结果表明,相对于已知的 Ti(IV)配合物,Salen 配合物的明显细胞毒性保留更长的预孵育时间,这表明水解产物也可能引起细胞毒性作用,从而降低稳定性问题。

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