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Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea

There have been few studies dealing with chemical elucidation and pharmacological potentials of water-soluble polysaccharides from jasmine tea, limiting their use in functional foods. In this study, water-soluble polysaccharides (named as JSP) were extracted from Jasminum sambac (L.) Aiton tea and f...

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Autores principales: Tang, Yayuan, Sheng, Jinfeng, He, Xuemei, Sun, Jian, Wei, Zhen, Liu, Guoming, Li, Changbao, Lin, Bo, Li, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535958/
https://www.ncbi.nlm.nih.gov/pubmed/34681424
http://dx.doi.org/10.3390/foods10102375
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author Tang, Yayuan
Sheng, Jinfeng
He, Xuemei
Sun, Jian
Wei, Zhen
Liu, Guoming
Li, Changbao
Lin, Bo
Li, Li
author_facet Tang, Yayuan
Sheng, Jinfeng
He, Xuemei
Sun, Jian
Wei, Zhen
Liu, Guoming
Li, Changbao
Lin, Bo
Li, Li
author_sort Tang, Yayuan
collection PubMed
description There have been few studies dealing with chemical elucidation and pharmacological potentials of water-soluble polysaccharides from jasmine tea, limiting their use in functional foods. In this study, water-soluble polysaccharides (named as JSP) were extracted from Jasminum sambac (L.) Aiton tea and fractionated to afford two sub-fractions (JSP-1 and JSP-2). The main structural characteristics of novel JSP sub-fractions were determined by high performance gel permeation chromatography, ultra-performance liquid chromatography-tandem mass spectrometry, Fourier transform infrared, and nuclear magnetic resonance analysis. Physiologically, the abilities of JSP-1 and JSP-2 to reduce ferric ions, scavenge DPPH and hydroxyl radicals, as well as protect islet cells were confirmed in vitro. JSP-1 exhibited better antioxidant and hypoglycemic activities than JSP-2. The molecular weights of JSP-1 and JSP-2 were 18.4 kDa and 14.1 kDa, respectively. JSP-1 was made up of glucose, galactose, rhamnose, xylose, arabinose, and galacturonic acid with molar ratios 1.14:4.69:1.00:9.92:13.79:4.09, whereas JSP-2 with a triple helical structure was composed of galactose, rhamnose, xylose, arabinose, and galacturonic acid as 3.80:1.00:8.27:11.85:5.05 of molar ratios. JSP-1 contains →1)-α-Galƒ-(3→, →1)-α-Galƒ-(2→, →1)-α-Araƒ-(5→, →1)-α-Araƒ-(3→, →1)-α-Araƒ-(3,5→, →1)-β-Xylp-(2→ and →1)-β-Xylp-(3→ residues in the backbone. These results open up new pharmacological prospects for the water-soluble polysaccharides extracted from jasmine tea.
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spelling pubmed-85359582021-10-23 Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea Tang, Yayuan Sheng, Jinfeng He, Xuemei Sun, Jian Wei, Zhen Liu, Guoming Li, Changbao Lin, Bo Li, Li Foods Article There have been few studies dealing with chemical elucidation and pharmacological potentials of water-soluble polysaccharides from jasmine tea, limiting their use in functional foods. In this study, water-soluble polysaccharides (named as JSP) were extracted from Jasminum sambac (L.) Aiton tea and fractionated to afford two sub-fractions (JSP-1 and JSP-2). The main structural characteristics of novel JSP sub-fractions were determined by high performance gel permeation chromatography, ultra-performance liquid chromatography-tandem mass spectrometry, Fourier transform infrared, and nuclear magnetic resonance analysis. Physiologically, the abilities of JSP-1 and JSP-2 to reduce ferric ions, scavenge DPPH and hydroxyl radicals, as well as protect islet cells were confirmed in vitro. JSP-1 exhibited better antioxidant and hypoglycemic activities than JSP-2. The molecular weights of JSP-1 and JSP-2 were 18.4 kDa and 14.1 kDa, respectively. JSP-1 was made up of glucose, galactose, rhamnose, xylose, arabinose, and galacturonic acid with molar ratios 1.14:4.69:1.00:9.92:13.79:4.09, whereas JSP-2 with a triple helical structure was composed of galactose, rhamnose, xylose, arabinose, and galacturonic acid as 3.80:1.00:8.27:11.85:5.05 of molar ratios. JSP-1 contains →1)-α-Galƒ-(3→, →1)-α-Galƒ-(2→, →1)-α-Araƒ-(5→, →1)-α-Araƒ-(3→, →1)-α-Araƒ-(3,5→, →1)-β-Xylp-(2→ and →1)-β-Xylp-(3→ residues in the backbone. These results open up new pharmacological prospects for the water-soluble polysaccharides extracted from jasmine tea. MDPI 2021-10-07 /pmc/articles/PMC8535958/ /pubmed/34681424 http://dx.doi.org/10.3390/foods10102375 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
Tang, Yayuan
Sheng, Jinfeng
He, Xuemei
Sun, Jian
Wei, Zhen
Liu, Guoming
Li, Changbao
Lin, Bo
Li, Li
Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea
title Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea
title_full Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea
title_fullStr Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea
title_full_unstemmed Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea
title_short Novel Antioxidant and Hypoglycemic Water-Soluble Polysaccharides from Jasmine Tea
title_sort novel antioxidant and hypoglycemic water-soluble polysaccharides from jasmine tea
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535958/
https://www.ncbi.nlm.nih.gov/pubmed/34681424
http://dx.doi.org/10.3390/foods10102375
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