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Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger

The monoterpenoid 1,8-cineole is obtained from the leaves of Eucalyptus globulus and it has important biological activities. It is a cheap natural substrate because it is a by-product of the Eucalyptus cultivation for wood and pulp production. In this study, it was evaluated the potential of three f...

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Autores principales: Ramos, Aline de Souza, Ribeiro, Joyce Benzaquem, Teixeira, Bruna Gomes, Ferreira, José Luiz Pinto, Silva, Jefferson Rocha de A., Ferreira, Alexandre do Amaral, de Souza, Rodrigo Octavio Mendonça Alves, Amaral, Ana Claudia F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Microbiologia 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4512070/
https://www.ncbi.nlm.nih.gov/pubmed/26221115
http://dx.doi.org/10.1590/S1517-838246120131020
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author Ramos, Aline de Souza
Ribeiro, Joyce Benzaquem
Teixeira, Bruna Gomes
Ferreira, José Luiz Pinto
Silva, Jefferson Rocha de A.
Ferreira, Alexandre do Amaral
de Souza, Rodrigo Octavio Mendonça Alves
Amaral, Ana Claudia F.
author_facet Ramos, Aline de Souza
Ribeiro, Joyce Benzaquem
Teixeira, Bruna Gomes
Ferreira, José Luiz Pinto
Silva, Jefferson Rocha de A.
Ferreira, Alexandre do Amaral
de Souza, Rodrigo Octavio Mendonça Alves
Amaral, Ana Claudia F.
author_sort Ramos, Aline de Souza
collection PubMed
description The monoterpenoid 1,8-cineole is obtained from the leaves of Eucalyptus globulus and it has important biological activities. It is a cheap natural substrate because it is a by-product of the Eucalyptus cultivation for wood and pulp production. In this study, it was evaluated the potential of three filamentous fungi in the biotransformation of 1,8-cineole. The study was divided in two steps: first, reactions were carried out with 1,8-cineole at 1 g/L for 24 h; afterwards, reactions were carried out with substrate at 5 g/L for 5 days. The substrate was hydroxylated into 2-exo-hydroxy-1,8-cineole and 3-exo-hydroxy-1,8-cineole by fungi Mucor ramannianus and Aspergillus niger with high stereoselectivity. Trichoderma harzianum was also tested but no transformation was detected. M. ramannianus led to higher than 99% of conversion within 24 h with a starting high substrate concentration (1 g/L). When substrate was added at 5 g/L, only M. ramannianus was able to catalyze the reaction, but the conversion level was 21.7% after 5 days. Both products have defined stereochemistry and could be used as chiral synthons. Furthermore, biological activity has been described for 3-exo-hydroxy-1,8-cineol. To the best of our knowledge, this is the first report on the use of M. ramannianus in this reaction.
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spelling pubmed-45120702015-07-28 Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger Ramos, Aline de Souza Ribeiro, Joyce Benzaquem Teixeira, Bruna Gomes Ferreira, José Luiz Pinto Silva, Jefferson Rocha de A. Ferreira, Alexandre do Amaral de Souza, Rodrigo Octavio Mendonça Alves Amaral, Ana Claudia F. Braz J Microbiol Industrial Microbiology The monoterpenoid 1,8-cineole is obtained from the leaves of Eucalyptus globulus and it has important biological activities. It is a cheap natural substrate because it is a by-product of the Eucalyptus cultivation for wood and pulp production. In this study, it was evaluated the potential of three filamentous fungi in the biotransformation of 1,8-cineole. The study was divided in two steps: first, reactions were carried out with 1,8-cineole at 1 g/L for 24 h; afterwards, reactions were carried out with substrate at 5 g/L for 5 days. The substrate was hydroxylated into 2-exo-hydroxy-1,8-cineole and 3-exo-hydroxy-1,8-cineole by fungi Mucor ramannianus and Aspergillus niger with high stereoselectivity. Trichoderma harzianum was also tested but no transformation was detected. M. ramannianus led to higher than 99% of conversion within 24 h with a starting high substrate concentration (1 g/L). When substrate was added at 5 g/L, only M. ramannianus was able to catalyze the reaction, but the conversion level was 21.7% after 5 days. Both products have defined stereochemistry and could be used as chiral synthons. Furthermore, biological activity has been described for 3-exo-hydroxy-1,8-cineol. To the best of our knowledge, this is the first report on the use of M. ramannianus in this reaction. Sociedade Brasileira de Microbiologia 2015-03-01 /pmc/articles/PMC4512070/ /pubmed/26221115 http://dx.doi.org/10.1590/S1517-838246120131020 Text en Copyright © 2015, Sociedade Brasileira de Microbiologia All the content of the journal, except where otherwise noted, is licensed under a Creative Commons License CC BY-NC.
spellingShingle Industrial Microbiology
Ramos, Aline de Souza
Ribeiro, Joyce Benzaquem
Teixeira, Bruna Gomes
Ferreira, José Luiz Pinto
Silva, Jefferson Rocha de A.
Ferreira, Alexandre do Amaral
de Souza, Rodrigo Octavio Mendonça Alves
Amaral, Ana Claudia F.
Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger
title Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger
title_full Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger
title_fullStr Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger
title_full_unstemmed Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger
title_short Hydroxylation of 1,8-cineole by Mucor ramannianus and Aspergillus niger
title_sort hydroxylation of 1,8-cineole by mucor ramannianus and aspergillus niger
topic Industrial Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4512070/
https://www.ncbi.nlm.nih.gov/pubmed/26221115
http://dx.doi.org/10.1590/S1517-838246120131020
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