Synthesis and Anti‐Mycobacterium tuberculosis Activity of Imidazo[2,1‐b][1,3]oxazine Derivatives against Multidrug‐Resistant Strains

Author:

Fernandes Guilherme F. S.123ORCID,Manieri Karyn F.1ORCID,Bonjorno Andressa F.1ORCID,Campos Debora L.1ORCID,Ribeiro Camila M.1ORCID,Demarqui Fernanda M.1ORCID,Ruiz Daniel A. G.4ORCID,Nascimento‐Junior Nailton M.4ORCID,Denny William A.2ORCID,Thompson Andrew M.2ORCID,Pavan Fernando R.1ORCID,Dos Santos Jean L.1

Affiliation:

1. School of Pharmaceutical Sciences São Paulo State University Rod. Araraquara-Jaú Araraquara 14800903 Brazil

2. Auckland Cancer Society Research Centre Faculty of Medical and Health Sciences The University of Auckland Private Bag 92019 Auckland 1142 New Zealand

3. Present address: Department of Chemistry University College London 20 Gordon Street London WC1H 0AJ UK

4. Institute of Chemistry São Paulo State University Rua Professor Francisco Degni, 55 Araraquara 14800060 Brazil

Abstract

AbstractThe emergence of multidrug‐resistant strains of M. tuberculosis has raised concerns due to the greater difficulties in patient treatment and higher mortality rates. Herein, we revisited the 2‐nitro‐6,7‐dihydro‐5H‐imidazo[2,1‐b][1,3]oxazine scaffold and identified potent new carbamate derivatives having MIC90 values of 0.18–1.63 μM against Mtb H37Rv. Compounds 4749, 5153, and 55 exhibited remarkable activity against a panel of clinical isolates, displaying MIC90 values below 0.5 μM. In Mtb‐infected macrophages, several compounds demonstrated a 1‐log greater reduction in mycobacterial burden than rifampicin and pretomanid. The compounds tested did not exhibit significant cytotoxicity against three cell lines or any toxicity to Galleria mellonella. Furthermore, the imidazo[2,1‐b][1,3]oxazine derivatives did not show substantial activity against other bacteria or fungi. Finally, molecular docking studies revealed that the new compounds could interact with the deazaflavin‐dependent nitroreductase (Ddn) in a similar manner to pretomanid. Collectively, our findings highlight the chemical universe of imidazo[2,1‐b][1,3]oxazines and their promising potential against MDR‐TB.

Publisher

Wiley

Subject

Organic Chemistry,General Pharmacology, Toxicology and Pharmaceutics,Molecular Medicine,Drug Discovery,Biochemistry,Pharmacology

Reference52 articles.

1. Epidemiology: A mortal foe

2. Detection and Molecular Characterization of 9000-Year-Old Mycobacterium tuberculosis from a Neolithic Settlement in the Eastern Mediterranean

3. World Health Organization Global Tuberculosis Report 2022 Geneva 2022.

4. World Health Organization “WHO Coronavirus (COVID-19) Dashboard ” can be found underhttps://covid19.who.int/ 2023.

5. Tuberculosis Drug Discovery: Challenges and New Horizons

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