Synthesis, Characterization, ‘ADMET-SAR’ Prediction, DPPH Assay, and Anti-Mycobacterium Study of 4-[(substituted benzyl) amino]benzo hydrazides and its Hydrazones as the Acyl-CoA Carboxylase, AccD5 Inhibitors

Author:

Mali Suraj N.1ORCID,Thorat Bapu R.2,Desale Vijay J.34,Yamgar Ramesh S.5,Dharanguttikar Swapnali V.6,Dharanguttikar Vyankatesh R.7,Chtita Samir8,Oliveira Mozaniel9,Cruz Jorddy Neves10

Affiliation:

1. Department of Pharmaceutical Sciences, Birla Institute of Technology, Mesra-835215, India

2. Department of Chemistry, Government College of Arts and Science, Aurangabad, Maharashtra-431001, India

3. P.G. and Research Centre, Department of Chemistry, Government of Maharashtra’s Ismail Yusuf College, Jogeshwari, Mumbai-400060, India

4. Department of Chemistry, N.B. Mehta Science College, Bordi, Dist. Palghar-401701, Maharashtra, India

5. Department of Chemistry, Patkar-Varde College of Arts, Science and Commerce, Goregaon (W), Mumbai-400062, India

6. Bharati Vidyapeeth College of Pharmacy, Kolhapur, Maharashtra, India

7. Department of Chemistry, Rajarambapu College of Pharmacy, Kasegaon, Maharashtra, India

8. Laboratory of Analytical and Molecular Chemistry, Faculty of Sciences Ben M’Sik, Hassan II University of Casablanca, Sidi Othman, Box 7955, Casablanca, Morocco

9. Museu Paraense Emílio Goeldi, Belem, Brazil

10. Laboratory of Functional and Structural Biology, Institute of Biological Sciences, Federal University of Pará, Belém 66075-110, PA, Brazil

Abstract

Background: Hydrazide-hydrazone derivatives have shown diverse biological activities, such as antitubercular (anti-TB), antibacterial, antifungal, anticancer, anti-inflammatory, antiviral, and antiprotozoal actions. Objectives: Hydrazide–hydrazones contain azomethine (-NH-N=CH-) group connected with carbonyl group and are believed to be responsible for various pharmaceutical applications. They aid in the synthesis of different five-membered heterocyclic systems, such as oxadiazole, triazoles, etc. Methods: In the present study, various hydrazines/hydrazones were synthesized starting from 4- amino benzoic acid derivatives. Structures of all 9 newly synthesized compounds (6a-6d and 8a- 8e) were further characterized by using various spectroscopic methods, such as 1H-NMR (Nuclear Magnetic Resonance), FT-IR (Fourier-transform infrared spectroscopy), Gas chromatographymass spectrometry (GC-MS), etc. Furthermore, molecular docking analysis against the acyl-CoA carboxylase, AccD5 (PDB ID: 2A7S), was also carried out using the Glide module, which depicted good binding scores than standard drugs. The anti-tuberculosis activity of all the hydrazides and hydrazones (6a-6d and 8a-8e) were evaluated against the Mycobacterium tuberculosis H37 RV strain using the Alamar-Blue susceptibility (MABA) test. The activity was expressed as the minimum inhibitory concentration (MIC) in μg/mL values. The antioxidant activity was also carried out using a DPPH assay. Results: Our findings demonstrated highly encouraging in-vitro results (MABA assay, MIC: 1.2 μg/mL) of hydrazones as depicted by good antimycobacterial activity. The antioxidant results showed a moderate to a good percentage of DPPH inhibition. Our in-silico ADMET analysis further suggested good pharmacokinetic and toxicity-free profiles of synthesized analogues (6a-6d and 8a-8e). Conclusion: Our results signify hydrazones/hydrazines as potential hit candidates against the future developments of potent and safer anti-TB agents.

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery,Molecular Medicine,General Medicine

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