Pal Mousumi, Nandi Utpal, Mukherjee Debaraj
Jadavpur University, Raja S. C. Mullick Road, Kolkata, West Bengal, 700032, India.
CSIR-Indian Institute of Integrative Medicine, Canal Road, Jammu, J&K, 180001, India.
Eur J Med Chem. 2018 Apr 25;150:419-445. doi: 10.1016/j.ejmech.2018.03.015. Epub 2018 Mar 7.
Ruthenium (Ru) complexes are known for their promising anticancer activity presumably due to octahedral coordination geometry, slow ligand exchange rate, the range of different oxidation states and target specificity. This review article summarizes the physicochemical processes which are responsible for the selectivity of Ru complexes toward cancer cells over the normal cells. Emphasis has been given on the activation mechanism of Ru(III) complex administered as a prodrug and then the release of active species in an acidic environment of cancer cell through normal or photo induced hydrolysis or ligand oxidation. This article also elaborates how active Ru complex can be designed by their rate of hydrolysis, kinetics of ligand exchange, pKa of the aquated species. The article further articulates how Ru complexes inhibit tumor growth via multiple events such as transferrin/albumin binding, ROS generation, inhibition of glutathione-S-transferases and kinases and DNA intercalation. Based on the above understanding, examples of various Ru complexes with their in-vitro cell based cytotoxicity and mechanism of action have been described to make this review comprehensive for future Ru based anticancer drug development. In the end, comments have been made on some emerging concepts regarding lack of innertness of Ru(III) complexes vis-à-vis Ru(II) species.
钌(Ru)配合物因其有望的抗癌活性而闻名,这可能归因于八面体配位几何结构、缓慢的配体交换速率、不同氧化态范围以及靶向特异性。这篇综述文章总结了导致Ru配合物对癌细胞比对正常细胞具有选择性的物理化学过程。重点阐述了作为前药给药的Ru(III)配合物的活化机制,以及随后通过正常或光诱导水解或配体氧化在癌细胞酸性环境中释放活性物种的过程。本文还详细说明了如何通过水解速率、配体交换动力学、水合物种的pKa来设计活性Ru配合物。文章进一步阐明了Ru配合物如何通过多种事件抑制肿瘤生长,如转铁蛋白/白蛋白结合、活性氧生成、谷胱甘肽 - S - 转移酶和激酶的抑制以及DNA嵌入。基于上述理解,描述了各种Ru配合物及其基于体外细胞的细胞毒性和作用机制的实例,以使本综述对未来基于Ru的抗癌药物开发具有全面性。最后,对一些关于Ru(III)配合物相对于Ru(II)物种缺乏惰性的新兴概念进行了评论。