Novel ruthenium azo-quinoline complexes with enhanced photonuclease activity in human cancer cells

Kaulage, Mangesh H. ; Maji, Basudeb ; Pasadi, Sanjeev ; Bhattacharya, Santanu ; Muniyappa, K. (2017) Novel ruthenium azo-quinoline complexes with enhanced photonuclease activity in human cancer cells European Journal of Medicinal Chemistry, 139 . pp. 1016-1029. ISSN 0223-5234

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Official URL: http://doi.org/10.1016/j.ejmech.2017.08.059

Related URL: http://dx.doi.org/10.1016/j.ejmech.2017.08.059

Abstract

Coordinatively saturated ruthenium complexes with a variable net charge are currently under intense investigation for their anticancer potential. These complexes, possessing long wavelength metal-to-ligand charge transfer with DNA photonuclease activity, have shown promising cytotoxic profiles. Although most of the ruthenium complexes exhibit significant photochemotherapeutic activity, their poor entry into cells hinder their development as potential drug molecules. Here, we report the synthesis and characterization of four new ruthenium (II) azo-8-hydroxyquinoline complexes, their mode of in vitro DNA binding and antiproliferative properties against cultured human cancer cell lines. The activity of these compounds prior to photoirradiation is minimal. However, they could induce DNA photonuclease activity through the generation of reactive oxygen species upon exposure to light. The activities exhibited by these complexes were found to be more efficient (>5-fold) than cisplatin, emphasizing their therapeutic potential. Collectively, these results support the idea that ruthenium (II) azo-8-hydroxyquinoline complexes can serve as potential agents in photodynamic anticancer therapy.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
ID Code:134185
Deposited On:05 Jan 2023 10:05
Last Modified:05 Jan 2023 10:05

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