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Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger

The biotransformation of vulgarin (1), an eudesmanolides-type sesquiterpene lactone obtained from Artemisia judaica, by the microorganism, Aspergillus niger, was carried out to give three more polar metabolites; 1-epi-tetrahydrovulgarin (1α,4α-dihydroxy-5αH,6,11βH-eudesman-6,12-olide (2), 20% yield,...

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Autores principales: ElGamal, Reem A., Galala, Amal A., Abdel-Kader, Maged S., Badria, Farid A., Soliman, Amal F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10180108/
https://www.ncbi.nlm.nih.gov/pubmed/37175138
http://dx.doi.org/10.3390/molecules28093729
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author ElGamal, Reem A.
Galala, Amal A.
Abdel-Kader, Maged S.
Badria, Farid A.
Soliman, Amal F.
author_facet ElGamal, Reem A.
Galala, Amal A.
Abdel-Kader, Maged S.
Badria, Farid A.
Soliman, Amal F.
author_sort ElGamal, Reem A.
collection PubMed
description The biotransformation of vulgarin (1), an eudesmanolides-type sesquiterpene lactone obtained from Artemisia judaica, by the microorganism, Aspergillus niger, was carried out to give three more polar metabolites; 1-epi-tetrahydrovulgarin (1α,4α-dihydroxy-5αH,6,11βH-eudesman-6,12-olide (2), 20% yield, 1α,4α-dihydroxyeudesm-2-en-5αH,6,11βH-6,12-olide (3a), 10% yield, and C-1 epimeric mixture (3a, b), 4% yield, in a ratio of 4:1, 3a/3b. The structures of vulgarin and its metabolites were elucidated by 1 and 2D NMR spectroscopy in conjunction with HRESIMS. Metabolites (3a) and (3b) are epimers, and they are reported here for the first time as new metabolites obtained by biotransformation by selective reduction at C-1. Vulgarin and its metabolites were evaluated as anti-inflammatory agents using the human cyclooxygenase (COX) inhibitory assay. The obtained data showed that (1) exhibited a good preferential inhibitory activity towards COX-2 (IC50 = 07.21 ± 0.10) and had a moderate effect on COX-1 (IC50 = 11.32 ± 0.24). Meanwhile, its metabolite (3a) retained a selective inhibitory activity against COX-1 (IC50 = 15.70 ± 0.51). In conclusion, the results of this study revealed the necessity of the presence α, β unsaturated carbonyl group in (1) for better COX-2 inhibitory activity. On the other hand, the selectivity of (1) as COX-1 inhibitor may be enhanced via the reduction of C-1 carbonyl group.
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spelling pubmed-101801082023-05-13 Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger ElGamal, Reem A. Galala, Amal A. Abdel-Kader, Maged S. Badria, Farid A. Soliman, Amal F. Molecules Article The biotransformation of vulgarin (1), an eudesmanolides-type sesquiterpene lactone obtained from Artemisia judaica, by the microorganism, Aspergillus niger, was carried out to give three more polar metabolites; 1-epi-tetrahydrovulgarin (1α,4α-dihydroxy-5αH,6,11βH-eudesman-6,12-olide (2), 20% yield, 1α,4α-dihydroxyeudesm-2-en-5αH,6,11βH-6,12-olide (3a), 10% yield, and C-1 epimeric mixture (3a, b), 4% yield, in a ratio of 4:1, 3a/3b. The structures of vulgarin and its metabolites were elucidated by 1 and 2D NMR spectroscopy in conjunction with HRESIMS. Metabolites (3a) and (3b) are epimers, and they are reported here for the first time as new metabolites obtained by biotransformation by selective reduction at C-1. Vulgarin and its metabolites were evaluated as anti-inflammatory agents using the human cyclooxygenase (COX) inhibitory assay. The obtained data showed that (1) exhibited a good preferential inhibitory activity towards COX-2 (IC50 = 07.21 ± 0.10) and had a moderate effect on COX-1 (IC50 = 11.32 ± 0.24). Meanwhile, its metabolite (3a) retained a selective inhibitory activity against COX-1 (IC50 = 15.70 ± 0.51). In conclusion, the results of this study revealed the necessity of the presence α, β unsaturated carbonyl group in (1) for better COX-2 inhibitory activity. On the other hand, the selectivity of (1) as COX-1 inhibitor may be enhanced via the reduction of C-1 carbonyl group. MDPI 2023-04-26 /pmc/articles/PMC10180108/ /pubmed/37175138 http://dx.doi.org/10.3390/molecules28093729 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
ElGamal, Reem A.
Galala, Amal A.
Abdel-Kader, Maged S.
Badria, Farid A.
Soliman, Amal F.
Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger
title Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger
title_full Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger
title_fullStr Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger
title_full_unstemmed Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger
title_short Microbial Transformation of the Sesquiterpene Lactone, Vulgarin, by Aspergillus niger
title_sort microbial transformation of the sesquiterpene lactone, vulgarin, by aspergillus niger
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10180108/
https://www.ncbi.nlm.nih.gov/pubmed/37175138
http://dx.doi.org/10.3390/molecules28093729
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