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Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria

We present herein an in-depth study on the activity of amidinoquinoxaline N-oxides 1 against Gram-positive and Gram-negative anaerobic bacteria. Based on 5-phenyl-2,3-dihydropyrimidoquinoxaline N-oxide 1a, the selected structural variations included in our study comprise the substituents α− to the N...

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Autores principales: Gruber, Nadia, Fernández-Canigia, Liliana, Kilimciler, Natalia B., Stipa, Pierluigi, Bisceglia, Juan A., García, María B., Gonzalez Maglio, Daniel H., Paz, Mariela L., Orelli, Liliana R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10498151/
https://www.ncbi.nlm.nih.gov/pubmed/37711381
http://dx.doi.org/10.1039/d3ra01184d
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author Gruber, Nadia
Fernández-Canigia, Liliana
Kilimciler, Natalia B.
Stipa, Pierluigi
Bisceglia, Juan A.
García, María B.
Gonzalez Maglio, Daniel H.
Paz, Mariela L.
Orelli, Liliana R.
author_facet Gruber, Nadia
Fernández-Canigia, Liliana
Kilimciler, Natalia B.
Stipa, Pierluigi
Bisceglia, Juan A.
García, María B.
Gonzalez Maglio, Daniel H.
Paz, Mariela L.
Orelli, Liliana R.
author_sort Gruber, Nadia
collection PubMed
description We present herein an in-depth study on the activity of amidinoquinoxaline N-oxides 1 against Gram-positive and Gram-negative anaerobic bacteria. Based on 5-phenyl-2,3-dihydropyrimidoquinoxaline N-oxide 1a, the selected structural variations included in our study comprise the substituents α− to the N-oxide function, the benzofused ring, substitution and quaternization of the amidine moiety, and the amidine ring size. Compounds 1 showed good to excellent antianaerobic activity, evaluated as the corresponding CIM(50) and CIM(90) values, and an antimicrobial spectrum similar to metronidazole. Six out of 13 compounds 1 had CIM(90) values significantly lower than the reference drug. Among them, imidazoline derivatives 1i–l were the most active structures. Such compounds were synthesized by base-promoted ring closure of the corresponding amidines. The N-oxides under study showed no significant cytotoxicity against RAW 264.7 cells, with high selectivity indexes. Their calculated ADME properties indicate that the compounds are potentially good oral drug candidates. The antianaerobic activity correlated satisfactorily with the electron affinity of the compounds, suggesting that they may undergo bioreductive activation before exerting their antibacterial activity.
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spelling pubmed-104981512023-09-14 Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria Gruber, Nadia Fernández-Canigia, Liliana Kilimciler, Natalia B. Stipa, Pierluigi Bisceglia, Juan A. García, María B. Gonzalez Maglio, Daniel H. Paz, Mariela L. Orelli, Liliana R. RSC Adv Chemistry We present herein an in-depth study on the activity of amidinoquinoxaline N-oxides 1 against Gram-positive and Gram-negative anaerobic bacteria. Based on 5-phenyl-2,3-dihydropyrimidoquinoxaline N-oxide 1a, the selected structural variations included in our study comprise the substituents α− to the N-oxide function, the benzofused ring, substitution and quaternization of the amidine moiety, and the amidine ring size. Compounds 1 showed good to excellent antianaerobic activity, evaluated as the corresponding CIM(50) and CIM(90) values, and an antimicrobial spectrum similar to metronidazole. Six out of 13 compounds 1 had CIM(90) values significantly lower than the reference drug. Among them, imidazoline derivatives 1i–l were the most active structures. Such compounds were synthesized by base-promoted ring closure of the corresponding amidines. The N-oxides under study showed no significant cytotoxicity against RAW 264.7 cells, with high selectivity indexes. Their calculated ADME properties indicate that the compounds are potentially good oral drug candidates. The antianaerobic activity correlated satisfactorily with the electron affinity of the compounds, suggesting that they may undergo bioreductive activation before exerting their antibacterial activity. The Royal Society of Chemistry 2023-09-13 /pmc/articles/PMC10498151/ /pubmed/37711381 http://dx.doi.org/10.1039/d3ra01184d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Gruber, Nadia
Fernández-Canigia, Liliana
Kilimciler, Natalia B.
Stipa, Pierluigi
Bisceglia, Juan A.
García, María B.
Gonzalez Maglio, Daniel H.
Paz, Mariela L.
Orelli, Liliana R.
Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria
title Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria
title_full Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria
title_fullStr Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria
title_full_unstemmed Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria
title_short Amidinoquinoxaline N-oxides: synthesis and activity against anaerobic bacteria
title_sort amidinoquinoxaline n-oxides: synthesis and activity against anaerobic bacteria
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10498151/
https://www.ncbi.nlm.nih.gov/pubmed/37711381
http://dx.doi.org/10.1039/d3ra01184d
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