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New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone

Microbial transformation of the anti-inflammatory steroid medrysone (1) was carried out for the first time with the filamentous fungi Cunninghamella blakesleeana (ATCC 8688a), Neurospora crassa (ATCC 18419), and Rhizopus stolonifer (TSY 0471). The objective was to evaluate the anti-inflammatory pote...

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Autores principales: Bano, Saira, Wahab, Atia-tul-, Yousuf, Sammer, Jabeen, Almas, Mesaik, Mohammad Ahmed, Rahman, Atta-ur-, Choudhary, M. Iqbal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4841542/
https://www.ncbi.nlm.nih.gov/pubmed/27104348
http://dx.doi.org/10.1371/journal.pone.0153951
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author Bano, Saira
Wahab, Atia-tul-
Yousuf, Sammer
Jabeen, Almas
Mesaik, Mohammad Ahmed
Rahman, Atta-ur-
Choudhary, M. Iqbal
author_facet Bano, Saira
Wahab, Atia-tul-
Yousuf, Sammer
Jabeen, Almas
Mesaik, Mohammad Ahmed
Rahman, Atta-ur-
Choudhary, M. Iqbal
author_sort Bano, Saira
collection PubMed
description Microbial transformation of the anti-inflammatory steroid medrysone (1) was carried out for the first time with the filamentous fungi Cunninghamella blakesleeana (ATCC 8688a), Neurospora crassa (ATCC 18419), and Rhizopus stolonifer (TSY 0471). The objective was to evaluate the anti-inflammatory potential of the substrate (1) and its metabolites. This yielded seven new metabolites, 14α-hydroxy-6α-methylpregn-4-ene-3,11,20-trione (2), 6β-hydroxy-6α-methylpregn-4-ene-3,11,20-trione (3), 15β-hydroxy-6α-methylpregn-4-ene-3,11,20-trione (4), 6β,17α-dihydroxy-6α-methylpregn-4-ene-3,11,20-trione (5), 6β,20S-dihydroxy-6α-methylpregn-4-ene-3,11-dione (6), 11β,16β-dihydroxy-6α-methylpregn-4-ene-3,11-dione (7), and 15β,20R-dihydroxy-6α-methylpregn-4-ene-3,11-dione (8). Single-crystal X-ray diffraction technique unambiguously established the structures of the metabolites 2, 4, 6, and 8. Fungal transformation of 1 yielded oxidation at the C-6β, -11β, -14α, -15β, -16β positions. Various cellular anti-inflammatory assays, including inhibition of phagocyte oxidative burst, T-cell proliferation, and cytokine were performed. Among all the tested compounds, metabolite 6 (IC(50) = 30.3 μg/mL) moderately inhibited the reactive oxygen species (ROS) produced from zymosan-induced human whole blood cells. Compounds 1, 4, 5, 7, and 8 strongly inhibited the proliferation of T-cells with IC(50) values between <0.2–10.4 μg/mL. Compound 7 was found to be the most potent inhibitor (IC(50) < 0.2 μg/mL), whereas compounds 2, 3, and 6 showed moderate levels of inhibition (IC(50) = 14.6–20.0 μg/mL). Compounds 1, and 7 also inhibited the production of pro-inflammatory cytokine TNF-α. All these compounds were found to be non-toxic to 3T3 cells (mouse fibroblast), and also showed no activity when tested against HeLa (human epithelial carcinoma), or against PC3 (prostate cancer) cancer cell lines.
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spelling pubmed-48415422016-04-29 New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone Bano, Saira Wahab, Atia-tul- Yousuf, Sammer Jabeen, Almas Mesaik, Mohammad Ahmed Rahman, Atta-ur- Choudhary, M. Iqbal PLoS One Research Article Microbial transformation of the anti-inflammatory steroid medrysone (1) was carried out for the first time with the filamentous fungi Cunninghamella blakesleeana (ATCC 8688a), Neurospora crassa (ATCC 18419), and Rhizopus stolonifer (TSY 0471). The objective was to evaluate the anti-inflammatory potential of the substrate (1) and its metabolites. This yielded seven new metabolites, 14α-hydroxy-6α-methylpregn-4-ene-3,11,20-trione (2), 6β-hydroxy-6α-methylpregn-4-ene-3,11,20-trione (3), 15β-hydroxy-6α-methylpregn-4-ene-3,11,20-trione (4), 6β,17α-dihydroxy-6α-methylpregn-4-ene-3,11,20-trione (5), 6β,20S-dihydroxy-6α-methylpregn-4-ene-3,11-dione (6), 11β,16β-dihydroxy-6α-methylpregn-4-ene-3,11-dione (7), and 15β,20R-dihydroxy-6α-methylpregn-4-ene-3,11-dione (8). Single-crystal X-ray diffraction technique unambiguously established the structures of the metabolites 2, 4, 6, and 8. Fungal transformation of 1 yielded oxidation at the C-6β, -11β, -14α, -15β, -16β positions. Various cellular anti-inflammatory assays, including inhibition of phagocyte oxidative burst, T-cell proliferation, and cytokine were performed. Among all the tested compounds, metabolite 6 (IC(50) = 30.3 μg/mL) moderately inhibited the reactive oxygen species (ROS) produced from zymosan-induced human whole blood cells. Compounds 1, 4, 5, 7, and 8 strongly inhibited the proliferation of T-cells with IC(50) values between <0.2–10.4 μg/mL. Compound 7 was found to be the most potent inhibitor (IC(50) < 0.2 μg/mL), whereas compounds 2, 3, and 6 showed moderate levels of inhibition (IC(50) = 14.6–20.0 μg/mL). Compounds 1, and 7 also inhibited the production of pro-inflammatory cytokine TNF-α. All these compounds were found to be non-toxic to 3T3 cells (mouse fibroblast), and also showed no activity when tested against HeLa (human epithelial carcinoma), or against PC3 (prostate cancer) cancer cell lines. Public Library of Science 2016-04-22 /pmc/articles/PMC4841542/ /pubmed/27104348 http://dx.doi.org/10.1371/journal.pone.0153951 Text en © 2016 Bano et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bano, Saira
Wahab, Atia-tul-
Yousuf, Sammer
Jabeen, Almas
Mesaik, Mohammad Ahmed
Rahman, Atta-ur-
Choudhary, M. Iqbal
New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone
title New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone
title_full New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone
title_fullStr New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone
title_full_unstemmed New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone
title_short New Anti-Inflammatory Metabolites by Microbial Transformation of Medrysone
title_sort new anti-inflammatory metabolites by microbial transformation of medrysone
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4841542/
https://www.ncbi.nlm.nih.gov/pubmed/27104348
http://dx.doi.org/10.1371/journal.pone.0153951
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