BioMetals, volume 34, issue 3, pages 529-556

Structural elucidation, theoretical investigation, biological screening and molecular docking studies of metal(II) complexes of NN donor ligand derived from 4-(2-aminopyridin-3-methylene)aminobenzoic acid

Ramaiah Konakanchi 1, 2
Geetha Swarupa Pamidimalla 3
Jyothi Prashanth 4
Togati Naveen 5
Laxma Reddy Kotha 2
1
 
Chemistry Division, H&S Department, Malla Reddy Engineering College for Women (Autonomous Institution), Hyderabad, India
3
 
Chemistry Division, H&S Department, Malla Reddy College of Engineering for Women, Hyderabad, India
Publication typeJournal Article
Publication date2021-03-02
Journal: BioMetals
scimago Q1
SJR0.618
CiteScore5.9
Impact factor4.1
ISSN09660844, 15728773
Metals and Alloys
General Biochemistry, Genetics and Molecular Biology
Biomaterials
General Agricultural and Biological Sciences
Abstract
Complexes of 4-(((2-aminopyridin-3-yl)methylene)amino)benzoic acid ligand with cobalt(II) (1), nickel(II) (2), copper(II) (3), zinc(II) (4) and palladium(II) (5) are synthesized and characterized by using different spectroscopic methods like, UV–Visible, infrared, 1H, 13C NMR, molar conductance, ESR and elemental analysis. Quantum chemical computations were made using DFT (density functional theory), B3LYP functional and 6-31+ +G(d,p)/SDD basis set in order to determine optimized structure parameters, frontier molecular orbital parameters and NLO properties. Based on DFT and experimental evidence, the complexes ensured that the octahedral geometry have been proposed for complexes 1, 2 and 4, square planar for complexes 3 and 5. All the complexes showed only residual molar conductance values and hence they were considered as non-electrolytes in DMF. In addition, the anti-proliferative activity of the compounds was evaluated against different human cancer cell lines (IMR-32, MCF-7, COLO205, A549, HeLa and HEK 293) and cisplatin is used as a reference drug. Compounds 1 and 4 showed remarkable cytotoxicity in five cancer cell lines tested except MCF-7. Also, the compounds were examined for their in vitro antimicrobial and scavenging activities. The molecular docking results are well corroborated with the experimental anticancer activity results.
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