Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity

Blaps rynchopetera Fairmaire has a long history of use as a folk medicine in China for treating fever, cough, gastritis, boils, and tumors. In the present study, the content analyses, monosaccharide composition analyses, and the macrophage phagocytic activity of rynchopetera polysaccharides (RPS) we...

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Autores principales: Wang Ying, Yang Yin-He, Luo Qing, Hu Yuan, Lu Qian, Yu Wan-Xin, Chen Jin-Hu, Wang Yu-Jia, Wang Mu-Ling, Zhao Yu, Xiao Huai
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Publicado: De Gruyter 2021
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spelling oai:doaj.org-article:ad58237692494a40b9c1ef37c9a1f1ae2021-12-05T14:10:43ZContent and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity2391-542010.1515/chem-2021-0035https://doaj.org/article/ad58237692494a40b9c1ef37c9a1f1ae2021-03-01T00:00:00Zhttps://doi.org/10.1515/chem-2021-0035https://doaj.org/toc/2391-5420Blaps rynchopetera Fairmaire has a long history of use as a folk medicine in China for treating fever, cough, gastritis, boils, and tumors. In the present study, the content analyses, monosaccharide composition analyses, and the macrophage phagocytic activity of rynchopetera polysaccharides (RPS) were reported. B. rhynchoptera is rich in polysaccharides (content value 3.97%). Through PMP (1-phenyl-3-methyl-5-pyrazolone) pre-column derivatization and high performance liquid chromatography (HPLC) testing, the results showed that RPS consist of 8 known monosaccharides, including D-mannose (Man), Rhamnose (Rha), D-glucuronic acid (GlcUA), D-galacturonic acid (GalUA), D-glucose (Glc), D-galactose (Gal), Arabinose (Ara), and Fucose (Fuc), with the total content of 171.70 mg g−1 and Glc has the highest content of 45.40 mg g−1. The phagocytic ability of mouse peritoneal macrophages was investigated after RPS stimulating alone and combined with lipopolysaccharide (LPS). RPS played an important role in the engulfment of mouse peritoneal macrophages and can significantly enhance the phagocytic ability of macrophages. However, no synergistic effects were observed when RPS combined with LPS.Wang YingYang Yin-HeLuo QingHu YuanLu QianYu Wan-XinChen Jin-HuWang Yu-JiaWang Mu-LingZhao YuXiao HuaiDe Gruyterarticleblaps rynchopeterapolysaccharidescontent determinationmonosaccharide compositionmacrophage phagocytic activityChemistryQD1-999ENOpen Chemistry, Vol 19, Iss 1, Pp 338-346 (2021)
institution DOAJ
collection DOAJ
language EN
topic blaps rynchopetera
polysaccharides
content determination
monosaccharide composition
macrophage phagocytic activity
Chemistry
QD1-999
spellingShingle blaps rynchopetera
polysaccharides
content determination
monosaccharide composition
macrophage phagocytic activity
Chemistry
QD1-999
Wang Ying
Yang Yin-He
Luo Qing
Hu Yuan
Lu Qian
Yu Wan-Xin
Chen Jin-Hu
Wang Yu-Jia
Wang Mu-Ling
Zhao Yu
Xiao Huai
Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity
description Blaps rynchopetera Fairmaire has a long history of use as a folk medicine in China for treating fever, cough, gastritis, boils, and tumors. In the present study, the content analyses, monosaccharide composition analyses, and the macrophage phagocytic activity of rynchopetera polysaccharides (RPS) were reported. B. rhynchoptera is rich in polysaccharides (content value 3.97%). Through PMP (1-phenyl-3-methyl-5-pyrazolone) pre-column derivatization and high performance liquid chromatography (HPLC) testing, the results showed that RPS consist of 8 known monosaccharides, including D-mannose (Man), Rhamnose (Rha), D-glucuronic acid (GlcUA), D-galacturonic acid (GalUA), D-glucose (Glc), D-galactose (Gal), Arabinose (Ara), and Fucose (Fuc), with the total content of 171.70 mg g−1 and Glc has the highest content of 45.40 mg g−1. The phagocytic ability of mouse peritoneal macrophages was investigated after RPS stimulating alone and combined with lipopolysaccharide (LPS). RPS played an important role in the engulfment of mouse peritoneal macrophages and can significantly enhance the phagocytic ability of macrophages. However, no synergistic effects were observed when RPS combined with LPS.
format article
author Wang Ying
Yang Yin-He
Luo Qing
Hu Yuan
Lu Qian
Yu Wan-Xin
Chen Jin-Hu
Wang Yu-Jia
Wang Mu-Ling
Zhao Yu
Xiao Huai
author_facet Wang Ying
Yang Yin-He
Luo Qing
Hu Yuan
Lu Qian
Yu Wan-Xin
Chen Jin-Hu
Wang Yu-Jia
Wang Mu-Ling
Zhao Yu
Xiao Huai
author_sort Wang Ying
title Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity
title_short Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity
title_full Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity
title_fullStr Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity
title_full_unstemmed Content and composition analysis of polysaccharides from Blaps rynchopetera and its macrophage phagocytic activity
title_sort content and composition analysis of polysaccharides from blaps rynchopetera and its macrophage phagocytic activity
publisher De Gruyter
publishDate 2021
url https://doaj.org/article/ad58237692494a40b9c1ef37c9a1f1ae
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