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Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit

The chemical composition and biological properties of palm Washingtonia filifera (Lindl.) H. Wendl. seeds are seldom studied. Bearing this in mind, the seeds of W. filifera fruits were analysed for their fatty acid and phenolic composition and their antioxidant activity in addition to their cholines...

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Autores principales: Floris, Sonia, Fais, Antonella, Rosa, Antonella, Piras, Alessandra, Marzouki, Hanen, Medda, Rosaria, González-Paramás, Ana M., Kumar, Amit, Santos-Buelga, Celestino, Era, Benedetta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9066185/
https://www.ncbi.nlm.nih.gov/pubmed/35521327
http://dx.doi.org/10.1039/c9ra02928a
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author Floris, Sonia
Fais, Antonella
Rosa, Antonella
Piras, Alessandra
Marzouki, Hanen
Medda, Rosaria
González-Paramás, Ana M.
Kumar, Amit
Santos-Buelga, Celestino
Era, Benedetta
author_facet Floris, Sonia
Fais, Antonella
Rosa, Antonella
Piras, Alessandra
Marzouki, Hanen
Medda, Rosaria
González-Paramás, Ana M.
Kumar, Amit
Santos-Buelga, Celestino
Era, Benedetta
author_sort Floris, Sonia
collection PubMed
description The chemical composition and biological properties of palm Washingtonia filifera (Lindl.) H. Wendl. seeds are seldom studied. Bearing this in mind, the seeds of W. filifera fruits were analysed for their fatty acid and phenolic composition and their antioxidant activity in addition to their cholinesterase and xanthine oxidase inhibitory activities. Seed extracts were revealed as a good source of phenolics with significant antioxidant activity. The phenolic profile mainly consisted of proanthocyanidins or procyanidin dimers B1–B4 among the major compounds. The highest butyrylcholinesterase inhibitory activity was found in the ethanolic extracts of seeds, with IC(50) values of 13.73 ± 1.31 μg mL(−1). Seed alcoholic extracts also displayed interesting xanthine oxidase inhibitory activity, with IC(50) values ranging between 75.2 ± 17.0 μg mL(−1) and 95.8 ± 5.9 μg mL(−1). Procyanidin B1, a major component in the extracts, could be an important contributor to that activity, as it was found to possess good xanthine oxidase inhibition capacity (IC(50) value of 53.51 ± 6.03 μg mL(−1)). Docking studies were also performed to predict the binding sites of procyanidins B1 and B2 within the xanthine oxidase structure. In all, W. filifera seeds appear as a promising natural source for the extraction of bioactive compounds with antioxidant and butyrylcholinesterase as well as xanthine oxidase inhibitory potential.
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spelling pubmed-90661852022-05-04 Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit Floris, Sonia Fais, Antonella Rosa, Antonella Piras, Alessandra Marzouki, Hanen Medda, Rosaria González-Paramás, Ana M. Kumar, Amit Santos-Buelga, Celestino Era, Benedetta RSC Adv Chemistry The chemical composition and biological properties of palm Washingtonia filifera (Lindl.) H. Wendl. seeds are seldom studied. Bearing this in mind, the seeds of W. filifera fruits were analysed for their fatty acid and phenolic composition and their antioxidant activity in addition to their cholinesterase and xanthine oxidase inhibitory activities. Seed extracts were revealed as a good source of phenolics with significant antioxidant activity. The phenolic profile mainly consisted of proanthocyanidins or procyanidin dimers B1–B4 among the major compounds. The highest butyrylcholinesterase inhibitory activity was found in the ethanolic extracts of seeds, with IC(50) values of 13.73 ± 1.31 μg mL(−1). Seed alcoholic extracts also displayed interesting xanthine oxidase inhibitory activity, with IC(50) values ranging between 75.2 ± 17.0 μg mL(−1) and 95.8 ± 5.9 μg mL(−1). Procyanidin B1, a major component in the extracts, could be an important contributor to that activity, as it was found to possess good xanthine oxidase inhibition capacity (IC(50) value of 53.51 ± 6.03 μg mL(−1)). Docking studies were also performed to predict the binding sites of procyanidins B1 and B2 within the xanthine oxidase structure. In all, W. filifera seeds appear as a promising natural source for the extraction of bioactive compounds with antioxidant and butyrylcholinesterase as well as xanthine oxidase inhibitory potential. The Royal Society of Chemistry 2019-07-08 /pmc/articles/PMC9066185/ /pubmed/35521327 http://dx.doi.org/10.1039/c9ra02928a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Floris, Sonia
Fais, Antonella
Rosa, Antonella
Piras, Alessandra
Marzouki, Hanen
Medda, Rosaria
González-Paramás, Ana M.
Kumar, Amit
Santos-Buelga, Celestino
Era, Benedetta
Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit
title Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit
title_full Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit
title_fullStr Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit
title_full_unstemmed Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit
title_short Phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the Washingtonia filifera palm fruit
title_sort phytochemical composition and the cholinesterase and xanthine oxidase inhibitory properties of seed extracts from the washingtonia filifera palm fruit
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9066185/
https://www.ncbi.nlm.nih.gov/pubmed/35521327
http://dx.doi.org/10.1039/c9ra02928a
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