4.7 Article

Synthesis, molecular modelling, FT-IR, Raman and NMR characterization, molecular docking and ADMET study of new nickel(II) complex with an N4-tetradentate thiosemicarbazone

Journal

JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS
Volume 39, Issue 12, Pages 4212-4224

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/07391102.2020.1775128

Keywords

thiosemicarbarbazone; nickel(II) complex; DFT calculations; molecular docking; ADMET

Funding

  1. Scientific Research Projects Coordination Unit of Istanbul University [ONAP-2423, 23488]

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A new nickel(II) complex has been synthesized and structurally analyzed by experimental and theoretical methods, showing strong binding affinity to DNA residues and potential for drug development. The compound also exhibits good oral drug-like actions and non-toxic nature in in silico ADMET analysis, suggesting it could be a model molecule for drug development.
A new nickel(II) complex was synthesized by usingS-propyl-thiosemicarbazide and 2-amino-3,5-dibromobenzaldehyde. The complex, obtained by the template effect of nickel ions, was structurally analysed by experimental and theoretical vibrational spectroscopy, NMR and density functional theory (DFT) calculations. By using DFT/B3LYP method with 6-311++G(d, p) basis set, the most stable molecular structure of the title molecule was calculated. The fundamental vibrational wavenumbers, IR and Raman intensities for the optimized structure of the molecule under investigation were determined and compared with the experimental vibrational spectra. The vibrational assignment was achieved using the calculated potential energy distributions of the vibrational modes. Moreover, the molecular electrostatic potential (MEP), the highest occupied molecular orbital (HOMO) and the lowest occupied molecular orbital (LUMO) energies were calculated, Molecular docking of the molecule was carried out against DNA in order to identify the potential inhibitory action of the title compound. The findings suggested that the aforementioned compound has a strong binding affinity to interact with DNA residues DT8, DC9, DG12, DG16, DA17, and DA18 through the intermolecular hydrogen bonds. Also the performedin silicoADMET analysis was the prediction of the synthesized molecule's pharmacokinetic and toxicity profile expressing good oral drug like actions and non-toxic nature. The complex has been shown to have the possibility to become a model molecule for drug development processes. Communicated by Ramaswamy H. Sarma

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