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Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum

Mosses from the genus Polytrichum have been shown to contain rare benzonaphthoxanthenones compounds, and many of these have been reported to have important biological activities. In this study, extracts from Polytrichum formosum were analyzed in vitro for their inhibitory properties on collagenase a...

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Autores principales: Marques, Raíssa Volpatto, Guillaumin, Agnès, Abdelwahab, Ahmed B., Salwinski, Aleksander, Gotfredsen, Charlotte H., Bourgaud, Frédéric, Enemark-Rasmussen, Kasper, Miguel, Sissi, Simonsen, Henrik Toft
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309073/
https://www.ncbi.nlm.nih.gov/pubmed/34206653
http://dx.doi.org/10.3390/plants10071271
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author Marques, Raíssa Volpatto
Guillaumin, Agnès
Abdelwahab, Ahmed B.
Salwinski, Aleksander
Gotfredsen, Charlotte H.
Bourgaud, Frédéric
Enemark-Rasmussen, Kasper
Miguel, Sissi
Simonsen, Henrik Toft
author_facet Marques, Raíssa Volpatto
Guillaumin, Agnès
Abdelwahab, Ahmed B.
Salwinski, Aleksander
Gotfredsen, Charlotte H.
Bourgaud, Frédéric
Enemark-Rasmussen, Kasper
Miguel, Sissi
Simonsen, Henrik Toft
author_sort Marques, Raíssa Volpatto
collection PubMed
description Mosses from the genus Polytrichum have been shown to contain rare benzonaphthoxanthenones compounds, and many of these have been reported to have important biological activities. In this study, extracts from Polytrichum formosum were analyzed in vitro for their inhibitory properties on collagenase and tyrosinase activity, two important cosmetic target enzymes involved respectively in skin aging and pigmentation. The 70% ethanol extract showed a dose-dependent inhibitory effect against collagenase (IC(50) = 4.65 mg/mL). The methanol extract showed a mild inhibitory effect of 44% against tyrosinase at 5.33 mg/mL. Both extracts were investigated to find the constituents having a specific affinity to the enzyme targets collagenase and tyrosinase. The known compounds ohioensin A (1), ohioensin C (3), and communin B (4), together with nor-ohioensin D (2), a new benzonaphthoxanthenone, were isolated from P. formosum. Their structures were determined by mass spectrometry and NMR spectroscopy. Compounds 1 (IC(50) = 71.99 µM) and 2 (IC(50) = 167.33 µM) showed inhibitory activity against collagenase. Compound 1 also exhibited inhibition of 30% against tyrosinase activity at 200 µM. The binding mode of the active compounds was theoretically generated by an in-silico approach against the 3D structures of collagenase and tyrosinase. These current results present the potential application from the moss P. formosum as a new natural source of collagenase and tyrosinase inhibitors.
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spelling pubmed-83090732021-07-25 Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum Marques, Raíssa Volpatto Guillaumin, Agnès Abdelwahab, Ahmed B. Salwinski, Aleksander Gotfredsen, Charlotte H. Bourgaud, Frédéric Enemark-Rasmussen, Kasper Miguel, Sissi Simonsen, Henrik Toft Plants (Basel) Article Mosses from the genus Polytrichum have been shown to contain rare benzonaphthoxanthenones compounds, and many of these have been reported to have important biological activities. In this study, extracts from Polytrichum formosum were analyzed in vitro for their inhibitory properties on collagenase and tyrosinase activity, two important cosmetic target enzymes involved respectively in skin aging and pigmentation. The 70% ethanol extract showed a dose-dependent inhibitory effect against collagenase (IC(50) = 4.65 mg/mL). The methanol extract showed a mild inhibitory effect of 44% against tyrosinase at 5.33 mg/mL. Both extracts were investigated to find the constituents having a specific affinity to the enzyme targets collagenase and tyrosinase. The known compounds ohioensin A (1), ohioensin C (3), and communin B (4), together with nor-ohioensin D (2), a new benzonaphthoxanthenone, were isolated from P. formosum. Their structures were determined by mass spectrometry and NMR spectroscopy. Compounds 1 (IC(50) = 71.99 µM) and 2 (IC(50) = 167.33 µM) showed inhibitory activity against collagenase. Compound 1 also exhibited inhibition of 30% against tyrosinase activity at 200 µM. The binding mode of the active compounds was theoretically generated by an in-silico approach against the 3D structures of collagenase and tyrosinase. These current results present the potential application from the moss P. formosum as a new natural source of collagenase and tyrosinase inhibitors. MDPI 2021-06-22 /pmc/articles/PMC8309073/ /pubmed/34206653 http://dx.doi.org/10.3390/plants10071271 Text en © 2021 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
Marques, Raíssa Volpatto
Guillaumin, Agnès
Abdelwahab, Ahmed B.
Salwinski, Aleksander
Gotfredsen, Charlotte H.
Bourgaud, Frédéric
Enemark-Rasmussen, Kasper
Miguel, Sissi
Simonsen, Henrik Toft
Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum
title Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum
title_full Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum
title_fullStr Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum
title_full_unstemmed Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum
title_short Collagenase and Tyrosinase Inhibitory Effect of Isolated Constituents from the Moss Polytrichum formosum
title_sort collagenase and tyrosinase inhibitory effect of isolated constituents from the moss polytrichum formosum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8309073/
https://www.ncbi.nlm.nih.gov/pubmed/34206653
http://dx.doi.org/10.3390/plants10071271
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