4.6 Article

Picolinate ruthenium(II)-arene complex with in vitro antiproliferative and antimetastatic properties: Comparison to a series of ruthenium(II)-arene complexes with similar structure

Journal

JOURNAL OF INORGANIC BIOCHEMISTRY
Volume 108, Issue -, Pages 53-61

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jinorgbio.2011.12.002

Keywords

Ruthenium(II)-arene; Antiproliferative activity; Antimetastatic; ERCC1; PARP

Funding

  1. Ministry of Science, Republic of Serbia [III 41026, 172017]

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In our previous study, ruthenium(II)-p-cymene complexes of general formula [(eta(6)-p-cymene)Ru(L)Cl2], L: 3-acetylpyridine (1), 2-amino-5-chloropyridine (2); and [(eta(6)-p-cymene)Ru(HL)Cl], HL: 2,3-pyridinedicarboxylic acid (3), 2,4-pyridinedicarboxylic acid (4), revealed low antiproliferative activity, except complex [(eta(6)-p-cymene)RuCl(picolinic acid)]center dot H2O (5) which exhibited IC50 around 80 mu M. In this study we further investigated in vitro potential of antimetastatic action of ruthenium complexes on HeLa and two endothelial cell lines. Comparison of structure and activity of five complexes indicated heterogenic mode of activity, with regard to the potential of antimetastatic and antiproliferative effect. Replacement of substituted pyridine ligand with picolinic acid (complex 5) around Ru(II) center contributed to complex cytotoxicity and ruthenium DNA binding affinity. Analysis of ruthenium(II) accumulation in DNA and protein fractions of HeLa cells, using ICP-OES revealed significantly higher content of complex 5 in DNA fraction in comparison to the other tested compounds. It also altered cell cycle progression, affected expression of DNA repair enzymes ERCC1 and MSH2, and showed enhanced activity in combination with 3-aminobenzamide. Regardless of their effect on cell growth, Ru(II) complexes exerted antimetastatic effect on several tumor cell lines in vitro, achieved mostly by the effect on cell adhesion, migration and angiogenesis, while picolinate ruthenium(II)-arene additionally exerted inhibitory effect on extracellular matrix degradation. (c) 2011 Elsevier Inc. All rights reserved.

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