Preparation, structure and properties of litchi pericarp polysaccharide
A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and...
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Published in | Scientific reports Vol. 15; no. 1; pp. 6331 - 15 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
21.02.2025
Nature Publishing Group Nature Portfolio |
Subjects | |
Online Access | Get full text |
ISSN | 2045-2322 2045-2322 |
DOI | 10.1038/s41598-025-90697-7 |
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Abstract | A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and in vitro antioxidant activity of UELPP-A1 and AC-UELPP were compared. The C/H on UELPP-A1 was assigned by Congo red test, FTIR, 1D and 2D NMR, and its structural characteristics were characterized. The results showed that the total sugar content of neutral UELPP-A1 was significantly increased to 94.15%, and its structure did not have a triple helix structure. In addition, the in vitro antioxidant activity test showed that both polysaccharides had antioxidant activity in a dose-dependent manner. The enhancement effect of AC-UELPP with the increase of concentration was the most significant (
P
< 0.05). Among them, the hydroxyl radical scavenging activity was stronger than its reducing ability and superoxide anion radical at the same polysaccharide concentration. Acetylation modification can improve the antioxidant activity of UELPP and has further research value for human health care. |
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AbstractList | A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and in vitro antioxidant activity of UELPP-A1 and AC-UELPP were compared. The C/H on UELPP-A1 was assigned by Congo red test, FTIR, 1D and 2D NMR, and its structural characteristics were characterized. The results showed that the total sugar content of neutral UELPP-A1 was significantly increased to 94.15%, and its structure did not have a triple helix structure. In addition, the in vitro antioxidant activity test showed that both polysaccharides had antioxidant activity in a dose-dependent manner. The enhancement effect of AC-UELPP with the increase of concentration was the most significant (P < 0.05). Among them, the hydroxyl radical scavenging activity was stronger than its reducing ability and superoxide anion radical at the same polysaccharide concentration. Acetylation modification can improve the antioxidant activity of UELPP and has further research value for human health care.A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and in vitro antioxidant activity of UELPP-A1 and AC-UELPP were compared. The C/H on UELPP-A1 was assigned by Congo red test, FTIR, 1D and 2D NMR, and its structural characteristics were characterized. The results showed that the total sugar content of neutral UELPP-A1 was significantly increased to 94.15%, and its structure did not have a triple helix structure. In addition, the in vitro antioxidant activity test showed that both polysaccharides had antioxidant activity in a dose-dependent manner. The enhancement effect of AC-UELPP with the increase of concentration was the most significant (P < 0.05). Among them, the hydroxyl radical scavenging activity was stronger than its reducing ability and superoxide anion radical at the same polysaccharide concentration. Acetylation modification can improve the antioxidant activity of UELPP and has further research value for human health care. A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and in vitro antioxidant activity of UELPP-A1 and AC-UELPP were compared. The C/H on UELPP-A1 was assigned by Congo red test, FTIR, 1D and 2D NMR, and its structural characteristics were characterized. The results showed that the total sugar content of neutral UELPP-A1 was significantly increased to 94.15%, and its structure did not have a triple helix structure. In addition, the in vitro antioxidant activity test showed that both polysaccharides had antioxidant activity in a dose-dependent manner. The enhancement effect of AC-UELPP with the increase of concentration was the most significant (P < 0.05). Among them, the hydroxyl radical scavenging activity was stronger than its reducing ability and superoxide anion radical at the same polysaccharide concentration. Acetylation modification can improve the antioxidant activity of UELPP and has further research value for human health care. Abstract A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and in vitro antioxidant activity of UELPP-A1 and AC-UELPP were compared. The C/H on UELPP-A1 was assigned by Congo red test, FTIR, 1D and 2D NMR, and its structural characteristics were characterized. The results showed that the total sugar content of neutral UELPP-A1 was significantly increased to 94.15%, and its structure did not have a triple helix structure. In addition, the in vitro antioxidant activity test showed that both polysaccharides had antioxidant activity in a dose-dependent manner. The enhancement effect of AC-UELPP with the increase of concentration was the most significant (P < 0.05). Among them, the hydroxyl radical scavenging activity was stronger than its reducing ability and superoxide anion radical at the same polysaccharide concentration. Acetylation modification can improve the antioxidant activity of UELPP and has further research value for human health care. A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated polysaccharide (AC-UELPP) was obtained by acetylation modification of the crude polysaccharide of litchi pericarp. The physicochemical properties and in vitro antioxidant activity of UELPP-A1 and AC-UELPP were compared. The C/H on UELPP-A1 was assigned by Congo red test, FTIR, 1D and 2D NMR, and its structural characteristics were characterized. The results showed that the total sugar content of neutral UELPP-A1 was significantly increased to 94.15%, and its structure did not have a triple helix structure. In addition, the in vitro antioxidant activity test showed that both polysaccharides had antioxidant activity in a dose-dependent manner. The enhancement effect of AC-UELPP with the increase of concentration was the most significant ( P < 0.05). Among them, the hydroxyl radical scavenging activity was stronger than its reducing ability and superoxide anion radical at the same polysaccharide concentration. Acetylation modification can improve the antioxidant activity of UELPP and has further research value for human health care. |
ArticleNumber | 6331 |
Author | Wang, Yijie Huang, Gangliang |
Author_xml | – sequence: 1 givenname: Yijie surname: Wang fullname: Wang, Yijie organization: Key Laboratory of Carbohydrate Science and Engineering, Chongqing Key Laboratory of Inorganic Functional Materials, Chongqing Normal University – sequence: 2 givenname: Gangliang surname: Huang fullname: Huang, Gangliang email: huangdoctor226@163.com organization: Key Laboratory of Carbohydrate Science and Engineering, Chongqing Key Laboratory of Inorganic Functional Materials, Chongqing Normal University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/39984581$$D View this record in MEDLINE/PubMed |
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Keywords | Bioactivity Purification Litchi pericarp polysaccharide Structural |
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Snippet | A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated... Abstract A high purity polysaccharide (UELPP-A1) was isolated from the crude polysaccharide of litchi pericarp (UELPP) by column chromatography, and acetylated... |
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SubjectTerms | 631/154 631/45 631/92 Acetylation Antioxidants Antioxidants - chemistry Antioxidants - isolation & purification Antioxidants - pharmacology Bioactivity Chromatography Column chromatography Free Radical Scavengers - chemistry Free Radical Scavengers - pharmacology Fruit - chemistry Humanities and Social Sciences Hydroxyl Radical - chemistry Hydroxyl radicals Litchi - chemistry Litchi pericarp polysaccharide multidisciplinary Pericarp Physicochemical properties Plant Extracts - chemistry Polysaccharides Polysaccharides - chemistry Polysaccharides - isolation & purification Polysaccharides - pharmacology Purification Saccharides Science Science (multidisciplinary) Spectroscopy, Fourier Transform Infrared Structural Superoxide anions |
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Title | Preparation, structure and properties of litchi pericarp polysaccharide |
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