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. 2016 Mar;31(2):533-543.
doi: 10.1002/bio.2992. Epub 2015 Aug 17.

Biological and protein-binding studies of newly synthesized polymer-cobalt(III) complexes

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Biological and protein-binding studies of newly synthesized polymer-cobalt(III) complexes

G Vignesh et al. Luminescence. 2016 Mar.

Abstract

The polymer-cobalt(III) complexes, [Co(bpy)(dien)BPEI]Cl3 · 4H2O (bpy = 2,2'-bipyridine, dien = diethylentriamine, BPEI = branched polyethyleneimine) were synthesized and characterized. The interaction of these complexes with human serum albumin (HSA) and bovine serum albumin (BSA) was investigated under physiological conditions using various physico-chemical techniques. The results reveal that the fluorescence quenching of serum albumins by polymer-cobalt(III) complexes took place through static quenching. The binding of these complexes changed the molecular conformation of the protein considerably. The polymer-cobalt(III) complex with x = 0.365 shows antimicrobial activity against several human pathogens. This complex also induces cytotoxicity against MCF-7 through apoptotic induction. However, further studies are needed to decipher the molecular mode of action of polymer-cobalt(III) complex and for its possible utilization in anticancer therapy.

Keywords: antimicrobial activity; cytotoxicity; polymer-cobalt(III) complexes; protein binding; static quenching.

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