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Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin

Efficient wound repair is crucial for mammalian survival. Healing of skin wounds is severely hampered in diabetic patients, resulting in chronic non-healing wounds that are difficult to treat. High-mobility group box 1 (HMGB1) is an important signaling molecule that is released during wounding, ther...

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Autores principales: Mees, Maarten A., Boone, Fleur, Bouwen, Thomas, Vanaerschot, Frederik, Titeca, Charlotte, Vikkula, Hanna-Kaisa, Catrysse, Leen, Vananroye, Anja, Koos, Erin, Alexandris, Stelios, Rosenfeldt, Sabine, Eyley, Samuel, Koetz, Joachim, van Loo, Geert, Thielemans, Wim, Hoste, Esther
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861362/
https://www.ncbi.nlm.nih.gov/pubmed/36678656
http://dx.doi.org/10.3390/pharmaceutics15010027
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author Mees, Maarten A.
Boone, Fleur
Bouwen, Thomas
Vanaerschot, Frederik
Titeca, Charlotte
Vikkula, Hanna-Kaisa
Catrysse, Leen
Vananroye, Anja
Koos, Erin
Alexandris, Stelios
Rosenfeldt, Sabine
Eyley, Samuel
Koetz, Joachim
van Loo, Geert
Thielemans, Wim
Hoste, Esther
author_facet Mees, Maarten A.
Boone, Fleur
Bouwen, Thomas
Vanaerschot, Frederik
Titeca, Charlotte
Vikkula, Hanna-Kaisa
Catrysse, Leen
Vananroye, Anja
Koos, Erin
Alexandris, Stelios
Rosenfeldt, Sabine
Eyley, Samuel
Koetz, Joachim
van Loo, Geert
Thielemans, Wim
Hoste, Esther
author_sort Mees, Maarten A.
collection PubMed
description Efficient wound repair is crucial for mammalian survival. Healing of skin wounds is severely hampered in diabetic patients, resulting in chronic non-healing wounds that are difficult to treat. High-mobility group box 1 (HMGB1) is an important signaling molecule that is released during wounding, thereby delaying regenerative responses in the skin. Here, we show that dissolving glycyrrhizin, a potent HMGB1 inhibitor, in water results in the formation of a hydrogel with remarkable rheological properties. We demonstrate that these glycyrrhizin-based hydrogels accelerate cutaneous wound closure in normoglycemic and diabetic mice by influencing keratinocyte migration. To facilitate topical application of glycyrrhizin hydrogels on cutaneous wounds, several concentrations of glycyrrhizinic acid in water were tested for their rheological, structural, and biological properties. By varying the concentration of glycyrrhizin, these hydrogel properties can be readily tuned, enabling customized wound care.
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spelling pubmed-98613622023-01-22 Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin Mees, Maarten A. Boone, Fleur Bouwen, Thomas Vanaerschot, Frederik Titeca, Charlotte Vikkula, Hanna-Kaisa Catrysse, Leen Vananroye, Anja Koos, Erin Alexandris, Stelios Rosenfeldt, Sabine Eyley, Samuel Koetz, Joachim van Loo, Geert Thielemans, Wim Hoste, Esther Pharmaceutics Article Efficient wound repair is crucial for mammalian survival. Healing of skin wounds is severely hampered in diabetic patients, resulting in chronic non-healing wounds that are difficult to treat. High-mobility group box 1 (HMGB1) is an important signaling molecule that is released during wounding, thereby delaying regenerative responses in the skin. Here, we show that dissolving glycyrrhizin, a potent HMGB1 inhibitor, in water results in the formation of a hydrogel with remarkable rheological properties. We demonstrate that these glycyrrhizin-based hydrogels accelerate cutaneous wound closure in normoglycemic and diabetic mice by influencing keratinocyte migration. To facilitate topical application of glycyrrhizin hydrogels on cutaneous wounds, several concentrations of glycyrrhizinic acid in water were tested for their rheological, structural, and biological properties. By varying the concentration of glycyrrhizin, these hydrogel properties can be readily tuned, enabling customized wound care. MDPI 2022-12-21 /pmc/articles/PMC9861362/ /pubmed/36678656 http://dx.doi.org/10.3390/pharmaceutics15010027 Text en © 2022 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
Mees, Maarten A.
Boone, Fleur
Bouwen, Thomas
Vanaerschot, Frederik
Titeca, Charlotte
Vikkula, Hanna-Kaisa
Catrysse, Leen
Vananroye, Anja
Koos, Erin
Alexandris, Stelios
Rosenfeldt, Sabine
Eyley, Samuel
Koetz, Joachim
van Loo, Geert
Thielemans, Wim
Hoste, Esther
Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
title Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
title_full Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
title_fullStr Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
title_full_unstemmed Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
title_short Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
title_sort glycyrrhizin-based hydrogels accelerate wound healing of normoglycemic and diabetic mouse skin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861362/
https://www.ncbi.nlm.nih.gov/pubmed/36678656
http://dx.doi.org/10.3390/pharmaceutics15010027
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