Article In: cienciavitae

Chemical Characterization and Biological Evaluation of New Cobalt(II) Complexes with Bioactive Ligands, 2-Picolinehydroxamic Acid and Reduced Schiff Base N-(2-Hydroxybenzyl)alanine, in Terms of DNA Binding and Antimicrobial Activity

Pharmaceuticals

Magdalena Wozniczka; Marta Lichawska; Marek Pajak2021MDPI AG

Key information

Authors:

Magdalena Wozniczka; Marta Lichawska; Manas Sutradhar (Manas Sutradhar); Magdalena Chmiela; Weronika Gonciarz; Marek Pajak

Published in

12/02/2021

Abstract

<jats:p>Five new heteroligand cobalt(II) complexes with 2-picolinehydroxamic acid and reduced Schiff base, N-(2-hydroxybenzyl)alanine, were formed in an aqueous solution over a wide pH range. The coordination properties of ligands towards the metal ion were determined using a pH-metric method, and then the speciation model was confirmed by UV–Vis studies. A stacking interaction between the Schiff base phenol ring and the 2-picolinehydroxamic acid pyridine ring was found to improve the stability of the heteroligand species, indicating more effective coordination in mixed-ligand complexes than in their respective binary systems. The antimicrobial properties of heteroligand complexes were determined against Gram-negative and Gram-positive bacteria, as well as fungal strains. The formulation demonstrated the highest bacteriostatic and bactericidal activity (3.65 mM) against two strains of Gram-negative Helicobacter pylori bacteria and towards Candida albicans and Candida glabrata; this is important due to the potential co-existence of these microorganisms in the gastric milieu and their role in the development of gastritis. The binary complexes in the cobalt(II)—2-picolinehydroxamic acid system and 2-picolinehydroxamic acid were not cytotoxic against L929 mouse fibroblasts, neither freshly prepared solutions or after two weeks’ storage. By comparison, the heteroligand complexes within the range 0.91–3.65 mM diminished the metabolic activity of L929 cells, which was correlated with increased damage to cell nuclei. The concentration of the heteroligand species increased over time; therefore, the complexes stored for two weeks exhibited stronger anticellular toxicity than the freshly prepared samples. The complexes formed in an aqueous solution under physiological pH effectively bound to calf thymus DNA in an intercalative manner. This DNA-binding ability may underpin the antimicrobial/antifungal activity of the heteroligand complexes and their ability to downregulate the growth of eukaryotic cells.</jats:p>

Publication details

Authors in the community:

Publication version

VoR - Version of Record

Publisher

MDPI AG

Title of the publication container

Pharmaceuticals

First page or article number

1254

Volume

14

Issue

12

ISSN

1424-8247

Fields of Science and Technology (FOS)

health-biotechnology - Medical biotechnology

Keywords

  • Drug Discovery
  • Pharmaceutical Science
  • Molecular Medicine

Publication language (ISO code)

eng - English

Alternative identifier (URI)

https://doi.org/10.3390/ph14121254

Rights type:

Only metadata available