((E)‐N′(3,5‐di‐tert‐butil‐2‐hedroxybenzilidene)‐2‐hydroxybenzohydrazide (H3sahz)2 Copper (II) Complex: Synthesis, Crystal Structures, in silico Evaluations, and Enzymatic Inhibition

Author:

Fatullayeva Perizad Amrulla1,Mejidov Ajdar Akper1,Safronenko Marina Gennadievna2,Nikolayevich Khrustalev Victor2,Yalcin Bahaddin3,Sadeghian Nastaran4,Sadeghi Morteza5,Taslimi Parham4ORCID

Affiliation:

1. Institute of Catalysis and Inorganic Chemistry Ministry of Science and Education of Azerbaijan Baku Azerbaijan

2. Peoples' Friendship University of Russia (RUDN University) Miklukho-Maklay Street Moscow 117198 Russian Federation

3. Department of Chemistry Marmara University Istanbul Turkey

4. Department of Biotechnology Faculty of Science Bartin University 74100- Bartin Turkey

5. Department of Cell and Molecular Biology & Microbiology Faculty of Biological Science and Technology University of Isfahan Isfahan Iran

Abstract

AbstractIn this study, (E)‐N′(3,5‐di‐tert‐butil‐2‐hedroxybenzilidene)‐2‐hydroxybenzohydrazide (H3sahz)2 and its copper (II) complex has been synthesized and evaluated by methods FTIR, UV–Vis, EPR, and single crystal X‐ray analysis. It has been shown, that H3sahz crystallizes as a dimer through hydrogen bonds. H3sahz with copper nitrate forms [Cu(H2sahz)(NO3)(H2O)] complex, which according to X‐ray diffraction analysis has a distorted square pyramidal structure. The complex was screened for α‐glucosidase (α‐Glu), acetylcholinesterase (AChE), and butyrylcholinesterase (BChE) inhibitory abilities. Results displayed that IC50 and Ki values of the novel complex for AChE, BChE, and α‐Glu enzymes were obtained at 0.93–2.14, 1.01–2.03, and 73.86–102.65 μM, respectively. The molecular docking outcomes have shown that the synthetic complex has a lower affinity for α‐glucosidase compared to acarbose. But the inhibition ability of H3sahz for acetylcholinesterase and butyrylcholinesterase enzymes was greater than that of tacrine. These findings indicate that the (H3sahz)2 complex may be considered a possible candidate for the development and discovery of compounds effective in inhibiting the relevant enzymes.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

Wiley

Subject

General Chemistry

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