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Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.

Hot air drying has proven to be an efficient method to preserve specific edible plant materials with medicinal properties. This is a process involving chemical, physical, and biological changes in plant matrices. Understanding these processes will lead to an improvement in the yields of bioactive co...

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Autores principales: Moldovan, Cadmiel, Frumuzachi, Oleg, Babotă, Mihai, Menghini, Luigi, Cesa, Stefania, Gavan, Alexandru, Sisea, Cristian R., Tanase, Corneliu, Dias, Maria Inês, Pereira, Carla, Ferreira, Isabel C.F.R., Crișan, Gianina, Mocan, Andrei, Barros, Lillian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8533465/
https://www.ncbi.nlm.nih.gov/pubmed/34679714
http://dx.doi.org/10.3390/antiox10101579
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author Moldovan, Cadmiel
Frumuzachi, Oleg
Babotă, Mihai
Menghini, Luigi
Cesa, Stefania
Gavan, Alexandru
Sisea, Cristian R.
Tanase, Corneliu
Dias, Maria Inês
Pereira, Carla
Ferreira, Isabel C.F.R.
Crișan, Gianina
Mocan, Andrei
Barros, Lillian
author_facet Moldovan, Cadmiel
Frumuzachi, Oleg
Babotă, Mihai
Menghini, Luigi
Cesa, Stefania
Gavan, Alexandru
Sisea, Cristian R.
Tanase, Corneliu
Dias, Maria Inês
Pereira, Carla
Ferreira, Isabel C.F.R.
Crișan, Gianina
Mocan, Andrei
Barros, Lillian
author_sort Moldovan, Cadmiel
collection PubMed
description Hot air drying has proven to be an efficient method to preserve specific edible plant materials with medicinal properties. This is a process involving chemical, physical, and biological changes in plant matrices. Understanding these processes will lead to an improvement in the yields of bioactive compounds. This study aims to optimize the drying process of two species’ fruits used in folk medicine, Berberis vulgaris and Crataegus monogyna. The optimized extracts’ antioxidant capacity was assessed using various assays, with the barberry extract showing very good activity (50.85, 30.98, and 302.45 mg TE/g dw for DPPH, TEAC, and FRAP assays, respectively). Both species exerted good fungal α-glucosidase inhibitory activity (IC(50) = 0.34 and 0.56 mg/mL, respectively) but no activity on mammalian α-glucosidase. Additionally, this study identified and quantified the main bioactive compounds. The results presented herein are a breakthrough in industrializing this drying process. Additional studies are necessary to mechanistically understand the drying process involved in these plant materials.
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spelling pubmed-85334652021-10-23 Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq. Moldovan, Cadmiel Frumuzachi, Oleg Babotă, Mihai Menghini, Luigi Cesa, Stefania Gavan, Alexandru Sisea, Cristian R. Tanase, Corneliu Dias, Maria Inês Pereira, Carla Ferreira, Isabel C.F.R. Crișan, Gianina Mocan, Andrei Barros, Lillian Antioxidants (Basel) Article Hot air drying has proven to be an efficient method to preserve specific edible plant materials with medicinal properties. This is a process involving chemical, physical, and biological changes in plant matrices. Understanding these processes will lead to an improvement in the yields of bioactive compounds. This study aims to optimize the drying process of two species’ fruits used in folk medicine, Berberis vulgaris and Crataegus monogyna. The optimized extracts’ antioxidant capacity was assessed using various assays, with the barberry extract showing very good activity (50.85, 30.98, and 302.45 mg TE/g dw for DPPH, TEAC, and FRAP assays, respectively). Both species exerted good fungal α-glucosidase inhibitory activity (IC(50) = 0.34 and 0.56 mg/mL, respectively) but no activity on mammalian α-glucosidase. Additionally, this study identified and quantified the main bioactive compounds. The results presented herein are a breakthrough in industrializing this drying process. Additional studies are necessary to mechanistically understand the drying process involved in these plant materials. MDPI 2021-10-07 /pmc/articles/PMC8533465/ /pubmed/34679714 http://dx.doi.org/10.3390/antiox10101579 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
Moldovan, Cadmiel
Frumuzachi, Oleg
Babotă, Mihai
Menghini, Luigi
Cesa, Stefania
Gavan, Alexandru
Sisea, Cristian R.
Tanase, Corneliu
Dias, Maria Inês
Pereira, Carla
Ferreira, Isabel C.F.R.
Crișan, Gianina
Mocan, Andrei
Barros, Lillian
Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.
title Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.
title_full Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.
title_fullStr Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.
title_full_unstemmed Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.
title_short Development of an Optimized Drying Process for the Recovery of Bioactive Compounds from the Autumn Fruits of Berberis vulgaris L. and Crataegus monogyna Jacq.
title_sort development of an optimized drying process for the recovery of bioactive compounds from the autumn fruits of berberis vulgaris l. and crataegus monogyna jacq.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8533465/
https://www.ncbi.nlm.nih.gov/pubmed/34679714
http://dx.doi.org/10.3390/antiox10101579
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