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Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.

The mechanism of the trichomonicidal activity of metronidazole and other 5-nitroimidazoles appears to depend on the ferredoxin-mediated reduction of their nitro group, with generation of a reactive metabolite or metabolites which interact with DNA leading to a subsequent inhibition of nucleic acid a...

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Detalles Bibliográficos
Autores principales: Moreno, S N, Docampo, R
Formato: Texto
Lenguaje:English
Publicado: 1985
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1568619/
https://www.ncbi.nlm.nih.gov/pubmed/3830698
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author Moreno, S N
Docampo, R
author_facet Moreno, S N
Docampo, R
author_sort Moreno, S N
collection PubMed
description The mechanism of the trichomonicidal activity of metronidazole and other 5-nitroimidazoles appears to depend on the ferredoxin-mediated reduction of their nitro group, with generation of a reactive metabolite or metabolites which interact with DNA leading to a subsequent inhibition of nucleic acid and protein synthesis. Redox cycling of these compounds under aerobic conditions appears to be a detoxification reaction by inhibiting net reduction of the drugs, thereby inhibiting their uptake. On the other hand, redox cycling of nitrofurans or other compounds with more positive reduction potential results in formation of high steady-state concentrations of oxygen-derived metabolites that might be of toxicological significance. It seems likely that reduced metabolites of nitroimidazoles (perhaps through covalent binding to tissue macromolecules and/or thiols depletion) are also involved in the nitroimidazoles' toxic effects to animal tissues and in their mutagenic and carcinogenic action.
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spelling pubmed-15686192006-09-18 Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis. Moreno, S N Docampo, R Environ Health Perspect Research Article The mechanism of the trichomonicidal activity of metronidazole and other 5-nitroimidazoles appears to depend on the ferredoxin-mediated reduction of their nitro group, with generation of a reactive metabolite or metabolites which interact with DNA leading to a subsequent inhibition of nucleic acid and protein synthesis. Redox cycling of these compounds under aerobic conditions appears to be a detoxification reaction by inhibiting net reduction of the drugs, thereby inhibiting their uptake. On the other hand, redox cycling of nitrofurans or other compounds with more positive reduction potential results in formation of high steady-state concentrations of oxygen-derived metabolites that might be of toxicological significance. It seems likely that reduced metabolites of nitroimidazoles (perhaps through covalent binding to tissue macromolecules and/or thiols depletion) are also involved in the nitroimidazoles' toxic effects to animal tissues and in their mutagenic and carcinogenic action. 1985-12 /pmc/articles/PMC1568619/ /pubmed/3830698 Text en
spellingShingle Research Article
Moreno, S N
Docampo, R
Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
title Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
title_full Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
title_fullStr Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
title_full_unstemmed Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
title_short Mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
title_sort mechanism of toxicity of nitro compounds used in the chemotherapy of trichomoniasis.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1568619/
https://www.ncbi.nlm.nih.gov/pubmed/3830698
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