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Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template

Cyclodextrins (CDs) are important molecular hosts for hydrophobic guests in water and extensively employed in the pharmaceutical, food and cosmetic industries to encapsulate drugs, flavours and aromas. Compared with α- and β-CD, the wide-scale use of γ-CD is currently limited due to costly productio...

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Autores principales: Sørensen, Juliane, Hansen, Emilie Ljungberg, Larsen, Dennis, Elmquist, Mathias Albert, Buchleithner, Andreas, Florean, Luca, Beeren, Sophie R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10355107/
https://www.ncbi.nlm.nih.gov/pubmed/37476725
http://dx.doi.org/10.1039/d3sc01997g
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author Sørensen, Juliane
Hansen, Emilie Ljungberg
Larsen, Dennis
Elmquist, Mathias Albert
Buchleithner, Andreas
Florean, Luca
Beeren, Sophie R.
author_facet Sørensen, Juliane
Hansen, Emilie Ljungberg
Larsen, Dennis
Elmquist, Mathias Albert
Buchleithner, Andreas
Florean, Luca
Beeren, Sophie R.
author_sort Sørensen, Juliane
collection PubMed
description Cyclodextrins (CDs) are important molecular hosts for hydrophobic guests in water and extensively employed in the pharmaceutical, food and cosmetic industries to encapsulate drugs, flavours and aromas. Compared with α- and β-CD, the wide-scale use of γ-CD is currently limited due to costly production processes. We show how the yield of γ-CD in the enzymatic synthesis of CDs can be increased 5-fold by adding a tetra-ortho-isopropoxy-substituted azobenzene template irradiated at 625 nm (to obtain the cis-(Z)-isomer) to direct the synthesis. Following the enzymatic reaction, the template can then be readily recovered from the product mixture for use in subsequent reaction cycles. Heating induces thermal cis-(Z) to trans-(E) relaxation and consequent dissociation from γ-CD whereupon the template can then be precipitated by acidification. For this study we designed and synthesised a set of three water-soluble azobenzene templates with different ortho-substituents and characterised their photoswitching behaviour using UV/vis and NMR spectroscopy. The templates were tested in cyclodextrin glucanotransferase-mediated dynamic combinatorial libraries (DCLs) of cyclodextrins while irradiating at different wavelengths to control the cis/trans ratios. To rationalise the behaviour of the DCLs, NMR titrations were carried out to investigate the binding interactions between α-, β- and γ-CD and the cis and trans isomers of each template.
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spelling pubmed-103551072023-07-20 Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template Sørensen, Juliane Hansen, Emilie Ljungberg Larsen, Dennis Elmquist, Mathias Albert Buchleithner, Andreas Florean, Luca Beeren, Sophie R. Chem Sci Chemistry Cyclodextrins (CDs) are important molecular hosts for hydrophobic guests in water and extensively employed in the pharmaceutical, food and cosmetic industries to encapsulate drugs, flavours and aromas. Compared with α- and β-CD, the wide-scale use of γ-CD is currently limited due to costly production processes. We show how the yield of γ-CD in the enzymatic synthesis of CDs can be increased 5-fold by adding a tetra-ortho-isopropoxy-substituted azobenzene template irradiated at 625 nm (to obtain the cis-(Z)-isomer) to direct the synthesis. Following the enzymatic reaction, the template can then be readily recovered from the product mixture for use in subsequent reaction cycles. Heating induces thermal cis-(Z) to trans-(E) relaxation and consequent dissociation from γ-CD whereupon the template can then be precipitated by acidification. For this study we designed and synthesised a set of three water-soluble azobenzene templates with different ortho-substituents and characterised their photoswitching behaviour using UV/vis and NMR spectroscopy. The templates were tested in cyclodextrin glucanotransferase-mediated dynamic combinatorial libraries (DCLs) of cyclodextrins while irradiating at different wavelengths to control the cis/trans ratios. To rationalise the behaviour of the DCLs, NMR titrations were carried out to investigate the binding interactions between α-, β- and γ-CD and the cis and trans isomers of each template. The Royal Society of Chemistry 2023-06-29 /pmc/articles/PMC10355107/ /pubmed/37476725 http://dx.doi.org/10.1039/d3sc01997g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sørensen, Juliane
Hansen, Emilie Ljungberg
Larsen, Dennis
Elmquist, Mathias Albert
Buchleithner, Andreas
Florean, Luca
Beeren, Sophie R.
Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template
title Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template
title_full Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template
title_fullStr Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template
title_full_unstemmed Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template
title_short Light-controlled enzymatic synthesis of γ-CD using a recyclable azobenzene template
title_sort light-controlled enzymatic synthesis of γ-cd using a recyclable azobenzene template
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10355107/
https://www.ncbi.nlm.nih.gov/pubmed/37476725
http://dx.doi.org/10.1039/d3sc01997g
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