Hydrazone, benzohydrazones and isoniazid-acylhydrazones as potential antituberculosis agents

Author:

Sampiron Eloísa G1,Costacurta Giovana F1,Baldin Vanessa P2,Almeida Aryadne L2,Ieque Andressa L1,Santos Nathally CS2ORCID,Alves-Olher Vanessa G3,Vandresen Fábio4,Gimenes Ana CR3,Siqueira Vera LD2,Caleffi-Ferracioli Katiany R2,Cardoso Rosilene F12,Scodro Regiane BL1

Affiliation:

1. Postgraduate Program in Health Sciences, State University of Maringá, Maringá, Paraná, 87020-900, Brazil

2. Postgraduate Program in Bioscience & Physiopathology, State University of Maringá, Maringá, Paraná, 87020-900, Brazil

3. Department of Chemistry, Federal Institute of Paraná, Paranavaí, Paraná, 87703-536, Brazil

4. Department of Chemistry, Federal Technological University of Paraná, Londrina, Paraná, 86057-970, Brazil

Abstract

Aim: To evaluate the potential of three benzohydrazones (1–3), four acylhydrazones derived from isoniazid (INH-acylhydrazones) (4–7) and one hydrazone (8) as antituberculosis agents. Materials & methods: Inhibitory and bactericidal activities were determined for the reference Mycobacterium tuberculosis ( Mtb) strain and clinical isolates. Cytotoxicity, drug combinations and ethidium bromide accumulation assays were also performed. Results: The tested compounds (1–8) presented excellent antituberculosis activity with surprisingly inhibitory (0.12–250 μg/ml) and bactericidal values, even against multidrug-resistant Mtb clinical isolates. Compounds showed high selectivity index, with values reaching 1833.33, and a limited spectrum of activity. Some of the compounds (2 & 8) are also great inhibitors of bacillus efflux pumps. Conclusion: Benzohydrazones and INH-acylhydrazones may be considered scaffolds for the development of new anti- Mtb drugs.

Publisher

Future Medicine Ltd

Subject

Microbiology (medical),Microbiology

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