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Please use this identifier to cite or link to this item: https://dspace.ffh.bg.ac.rs/handle/123456789/1993
Title: Synthesis, Crystallographic Structure, Theoretical Analysis, Molecular Docking Studies, and Biological Activity Evaluation of Binuclear Ru(II)-1-Naphthylhydrazine Complex
Authors: Eichhorn, Thomas
Kolbe, Franz
Mišić, Stefan
Dimić, Dušan 
Morgan, Ibrahim
Saoud, Mohamad
Milenković, Dejan
Marković, Zoran
Rüffer, Tobias
Dimitrić Marković, Jasmina 
Kaluđerović, Goran N
Keywords: BSA;DFT;Ru(II) complexes;hydrazine;radical scavenging activity
Issue Date: 30-Dec-2022
Journal: International journal of molecular sciences
Abstract: 
Ruthenium(II)-arene complexes have gained significant research interest due to their possible application in cancer therapy. In this contribution two new complexes are described, namely [{RuCl(η6-p-cymene)}2(μ-Cl)(μ-1-N,N'-naphthyl)]X (X = Cl, 1; PF6, 2), which were fully characterized by IR, NMR, and elemental microanalysis. Furthermore, the structure of 2 in the solid state was determined by a single crystal X-ray crystallographic study, confirming the composition of the crystals as 2·2MeOH. The Hirshfeld surface analysis was employed for the investigation of interactions that govern the crystal structure of 2·2MeOH. The structural data for 2 out of 2·2MeOH was used for the theoretical analysis of the cationic part [{RuCl(η6-p-cymene)}2(μ-Cl)(μ-1-N,N'-naphthyl)]+ (2a) which is common to both 1 and 2. The density functional theory, at B3LYP/6-31+G(d,p) basis set for H, C, N, and Cl atoms and LanL2DZ for Ru ions, was used for the optimization of the 2a structure. The natural bond orbital and quantum theory of atoms in molecules analyses were employed to quantify the intramolecular interactions. The reproduction of experimental IR and NMR spectra proved the applicability of the chosen level of theory. The binding of 1 to bovine serum albumin was examined by spectrofluorimetry and molecular docking, with complementary results obtained. Compound 1 acted as a radical scavenger towards DPPH• and HO• radicals, along with high activity towards cancer prostate and colon cell lines.
URI: https://dspace.ffh.bg.ac.rs/handle/123456789/1993
ISSN: 1661-6596
DOI: 10.3390/ijms24010689
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University of Belgrade
Faculty of Physical Chemistry
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PAC 105305
SERBIA
University of Belgrade Faculty of Physical Chemistry