Presa Andreu, Vázquez Guillem, Barrios Leoní A, Roubeau Olivier, Korrodi-Gregório Luís, Pérez-Tomás Ricardo, Gamez Patrick
Department of Inorganic and Organic Chemistry, Inorganic Chemistry Section , University of Barcelona , Martí i Franquès 1-11 , 08028 Barcelona , Spain.
Instituto de Ciencia de Materiales de Aragón , CSIC and Universidad de Zaragoza , Plaza San Francisco s/n , 50009 Zaragoza , Spain.
Inorg Chem. 2018 Apr 2;57(7):4009-4022. doi: 10.1021/acs.inorgchem.8b00146. Epub 2018 Mar 15.
The development of photoactivatable metal complexes with potential anticancer properties is a topical area of current investigation. Photoactivated chemotherapy using coordination compounds is typically based on photochemical processes occurring at the metal center. In the present study, an innovative approach is applied that takes advantage of the remarkable photochemical properties of diarylethenes. Following a proof-of-concept study with two complexes, namely, C1 and C2, a series of additional platinum(II) complexes from dithienylcyclopentene-based ligands was designed and prepared. Like C1 and C2, these new coordination compounds exhibit two thermally stable, interconvertible photoisomers that display distinct properties. The photochemical behavior of ligands L3-L7 has been analyzed by H NMR and UV-vis spectroscopies. Subsequently, the corresponding platinum(II) complexes C3-C7 were synthesized and fully characterized, including by single-crystal X-ray diffraction for some of them. Next, the interaction of each photoisomer (i.e., containing the open or closed ligand) of the metal complexes with DNA was examined thoroughly using various techniques, revealing their distinct DNA-binding modes and affinities, as observed for the earlier compounds C1 and C2. The antiproliferative activity of the two forms of the complexes was then assessed with five cancer cell lines and compared with that of C1 and C2, which supported the use of such diarylethene-based systems for the generation of a new class of potential photochemotherapeutic metallodrugs.
开发具有潜在抗癌特性的光活化金属配合物是当前研究的一个热门领域。使用配位化合物的光活化化疗通常基于在金属中心发生的光化学过程。在本研究中,采用了一种创新方法,利用了二芳基乙烯卓越的光化学性质。在对两种配合物C1和C2进行概念验证研究之后,设计并制备了一系列基于二噻吩基环戊烯配体的额外铂(II)配合物。与C1和C2一样,这些新的配位化合物表现出两种热稳定、可相互转化的光异构体,它们具有不同的性质。通过1H NMR和紫外可见光谱对配体L3-L7的光化学行为进行了分析。随后,合成了相应的铂(II)配合物C3-C7,并对其进行了全面表征,其中一些配合物还通过单晶X射线衍射进行了表征。接下来,使用各种技术全面研究了金属配合物的每种光异构体(即含有开放或封闭配体)与DNA的相互作用,揭示了它们不同的DNA结合模式和亲和力,这与早期的化合物C1和C2的情况一致。然后用五种癌细胞系评估了配合物两种形式的抗增殖活性,并与C1和C2进行了比较,这支持了使用这种基于二芳基乙烯的体系来生成一类新型潜在的光化学治疗金属药物。