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Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications

The replacement of potentially hazardous synthetic dyes with natural dyes and pigments are of great interest for a sustainable economy. In order to obtain cost‐efficient, environmentally friendly and competitive products, improvements in the cultivation and extraction of pigment‐producing organisms...

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Autores principales: Zschätzsch, Marlen, Steudler, Susanne, Reinhardt, Olena, Bergmann, Pia, Ersoy, Franziska, Stange, Stephanie, Wagenführ, André, Walther, Thomas, Berger, Ralf Günter, Werner, Anett
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7923565/
https://www.ncbi.nlm.nih.gov/pubmed/33716624
http://dx.doi.org/10.1002/elsc.202000079
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author Zschätzsch, Marlen
Steudler, Susanne
Reinhardt, Olena
Bergmann, Pia
Ersoy, Franziska
Stange, Stephanie
Wagenführ, André
Walther, Thomas
Berger, Ralf Günter
Werner, Anett
author_facet Zschätzsch, Marlen
Steudler, Susanne
Reinhardt, Olena
Bergmann, Pia
Ersoy, Franziska
Stange, Stephanie
Wagenführ, André
Walther, Thomas
Berger, Ralf Günter
Werner, Anett
author_sort Zschätzsch, Marlen
collection PubMed
description The replacement of potentially hazardous synthetic dyes with natural dyes and pigments are of great interest for a sustainable economy. In order to obtain cost‐efficient, environmentally friendly and competitive products, improvements in the cultivation and extraction of pigment‐producing organisms and in dyeing processes are necessary. In our study, we were able to scale up the production of xylindein by Chlorociboria aeruginascens from 3 to 70 L bioreactor cultivations. We have identified important bioprocess parameters like low shear stress (150 rpm, tip speed <0.5 m/s) for optimal pigment yield (4.8 mg/L/d). Additionally, we have demonstrated the potential of laetiporic acid production by Laetiporus sulphureus in various cultivation systems and media, achieving dried biomass concentrations of almost 10 g/L with a 7 L bioreactor cultivation after 17 days. Extractions performed at 70°C and 15 min incubation time showed optimal results. To the best of our knowledge, we have described for the first time the use of this pigment in silk dyeing, which results in a brilliant hue that cannot easily be produced by other natural pigments.
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spelling pubmed-79235652021-03-12 Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications Zschätzsch, Marlen Steudler, Susanne Reinhardt, Olena Bergmann, Pia Ersoy, Franziska Stange, Stephanie Wagenführ, André Walther, Thomas Berger, Ralf Günter Werner, Anett Eng Life Sci Research Articles The replacement of potentially hazardous synthetic dyes with natural dyes and pigments are of great interest for a sustainable economy. In order to obtain cost‐efficient, environmentally friendly and competitive products, improvements in the cultivation and extraction of pigment‐producing organisms and in dyeing processes are necessary. In our study, we were able to scale up the production of xylindein by Chlorociboria aeruginascens from 3 to 70 L bioreactor cultivations. We have identified important bioprocess parameters like low shear stress (150 rpm, tip speed <0.5 m/s) for optimal pigment yield (4.8 mg/L/d). Additionally, we have demonstrated the potential of laetiporic acid production by Laetiporus sulphureus in various cultivation systems and media, achieving dried biomass concentrations of almost 10 g/L with a 7 L bioreactor cultivation after 17 days. Extractions performed at 70°C and 15 min incubation time showed optimal results. To the best of our knowledge, we have described for the first time the use of this pigment in silk dyeing, which results in a brilliant hue that cannot easily be produced by other natural pigments. John Wiley and Sons Inc. 2021-01-26 /pmc/articles/PMC7923565/ /pubmed/33716624 http://dx.doi.org/10.1002/elsc.202000079 Text en © 2020 The Authors. Engineering in Life Sciences published by Wiley‐VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Zschätzsch, Marlen
Steudler, Susanne
Reinhardt, Olena
Bergmann, Pia
Ersoy, Franziska
Stange, Stephanie
Wagenführ, André
Walther, Thomas
Berger, Ralf Günter
Werner, Anett
Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications
title Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications
title_full Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications
title_fullStr Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications
title_full_unstemmed Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications
title_short Production of natural colorants by liquid fermentation with Chlorociboria aeruginascens and Laetiporus sulphureus and prospective applications
title_sort production of natural colorants by liquid fermentation with chlorociboria aeruginascens and laetiporus sulphureus and prospective applications
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7923565/
https://www.ncbi.nlm.nih.gov/pubmed/33716624
http://dx.doi.org/10.1002/elsc.202000079
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