Aspergillus niger NRRL

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Auteurs principaux: Eliwa, Duaa, Albadry, Mohamed A., Ibrahim, Abdel-Rahim S., Kabbash, Amal, Meepagala, Kumudini, Khan, Ikhlas A., El-Aasr, Mona, Ross, Samir A.
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Publié: Zenodo 2021
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author Eliwa, Duaa
Albadry, Mohamed A.
Ibrahim, Abdel-Rahim S.
Kabbash, Amal
Meepagala, Kumudini
Khan, Ikhlas A.
El-Aasr, Mona
Ross, Samir A.
author_facet Eliwa, Duaa
Albadry, Mohamed A.
Ibrahim, Abdel-Rahim S.
Kabbash, Amal
Meepagala, Kumudini
Khan, Ikhlas A.
El-Aasr, Mona
Ross, Samir A.
contents <p><i>3.5. Microbial transformation using Aspergillus niger NRRL 322</i></p><p>Biotransformation of papaverine using <i>Aspergillus niger</i> NRRL 322 afforded to two metabolites (2 and 3). The residue (1 gm) was dissolved in 50 ml of methanol/dichloromethane mixture (1:1) and adsorbed onto 1 gm Celite and dried. The adsorbed sample was placed onto a glass column (50 × 2.5 cm) packed with silica after making a slurry in dichloromethane. The column was isocratically eluted with dichloromethane: methanol (97.5:2.5) and 10 ml fractions were collected. Fractions 20–44 were pooled together to give mixture of <b>2</b> and <b>3</b> as determined by TLC. The metabolites were obtained in the form of yellowish residue (80 mg, <i>R</i> f 0.3 S 2).</p><p>The mixture was loaded in silica biotage column (18 × 150 mm). The column was gradiently eluted with dichloromethane 100% then dichloromethane:2-propanol (98:2, 97:3,95:5) and 20 ml fractions were collected. Fractions 27–31 were pooled together to give pure <b>2</b>, in the form of white powder (7 mg, <i>Rf</i> 0.70 S 1). Fractions 65–85 were pooled together to give pure <b>3</b>, in the form of white powder (30 mg, <i>R</i> f 0.61 S 1).</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_8302180
institution Zenodo
language
publishDate 2021
publisher Zenodo
record_format zenodo
spellingShingle Aspergillus niger NRRL
Eliwa, Duaa
Albadry, Mohamed A.
Ibrahim, Abdel-Rahim S.
Kabbash, Amal
Meepagala, Kumudini
Khan, Ikhlas A.
El-Aasr, Mona
Ross, Samir A.
Biodiversity
Taxonomy
Fungi
Ascomycota
Eurotiomycetes
Eurotiales
Aspergillaceae
Aspergillus
Aspergillus niger
<p><i>3.5. Microbial transformation using Aspergillus niger NRRL 322</i></p><p>Biotransformation of papaverine using <i>Aspergillus niger</i> NRRL 322 afforded to two metabolites (2 and 3). The residue (1 gm) was dissolved in 50 ml of methanol/dichloromethane mixture (1:1) and adsorbed onto 1 gm Celite and dried. The adsorbed sample was placed onto a glass column (50 × 2.5 cm) packed with silica after making a slurry in dichloromethane. The column was isocratically eluted with dichloromethane: methanol (97.5:2.5) and 10 ml fractions were collected. Fractions 20–44 were pooled together to give mixture of <b>2</b> and <b>3</b> as determined by TLC. The metabolites were obtained in the form of yellowish residue (80 mg, <i>R</i> f 0.3 S 2).</p><p>The mixture was loaded in silica biotage column (18 × 150 mm). The column was gradiently eluted with dichloromethane 100% then dichloromethane:2-propanol (98:2, 97:3,95:5) and 20 ml fractions were collected. Fractions 27–31 were pooled together to give pure <b>2</b>, in the form of white powder (7 mg, <i>Rf</i> 0.70 S 1). Fractions 65–85 were pooled together to give pure <b>3</b>, in the form of white powder (30 mg, <i>R</i> f 0.61 S 1).</p>
title Aspergillus niger NRRL
topic Biodiversity
Taxonomy
Fungi
Ascomycota
Eurotiomycetes
Eurotiales
Aspergillaceae
Aspergillus
Aspergillus niger
url https://doi.org/10.5281/zenodo.8302180