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Updated: Apr 29, 2026

Amide Coupling Reaction for the Synthesis of Bispyridine-based Ligands and Their Complexation to Platinum as Dinuclear Anticancer Agents
Published on: May 28, 2014
Synthesis, structural elucidation, DNA binding, cleavage, cholinesterase inhibitory activity of metal complexes of
Ebenezer Bonpandi1, Caroline John2, Pechiammal Arumugam3
1Department of Research and Development, Hubert Enviro Care Systems Limited, Chennai, Tamil Nadu, India.
Abstract:
To achieve efficient cholinesterase inhibitory activity of metal(II) complexes of Cu(II), Ni(II), Co(II), and Zn(II) with 2,2'-bipyridyl framework [M-L] (L = 2,2'-bipyridyl derivative containing an aromatic center and an e--withdrawing -NO2 group) was developed. The structural characteristics were identified through spectroscopic and analytical studies. The antibacterial activity of the produced ligand and metal(II) complexes against bacteria and fungi was evaluated. The synthesized metal(II) complexes ability to fragment DNA has been studied on pUC 18 DNA using agarose gel electrophoresis. The copper(II) complex (Kb=4.11 × 105 M-1) is stronger binding affinity for DNA than ethidium bromide (EB) (Kb=3.3 × 105 M-1) and metal(II) complexes. The chemically produced 2,2'-bipyridyl derivative had the strongest inhibitory effects against acetylcholinesterase (AChE) and butyrylcholinesterase (BuChE) with IC50 values that were less than the standard compounds (0.34 and 3.42 µM, respectively). Our research results could aid in the creation of novel drug molecules, especially for the treatment of neurological conditions like Alzheimer's disease and neurological disorders occurring through diabetes.
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