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首页> 外文期刊>Pharmacognosy magazine >Preparation and Bioactivity of Exopolysaccharide from an Endophytic Fungus Chaetomium sp. of the Medicinal Plant Gynostemma Pentaphylla
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Preparation and Bioactivity of Exopolysaccharide from an Endophytic Fungus Chaetomium sp. of the Medicinal Plant Gynostemma Pentaphylla

机译:内生真菌Chaetomium sp。的胞外多糖的制备及其生物活性。绞股蓝的药用植物

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摘要

Background: Many exopolysaccharides from the endophytes in medicinal plants possess various potential bioactivities. Materials and Methods: The endophytic fungus JY25 was isolated from the leave of the Chinese medicinal plant Gynostemma pentaphylla and identified as Chaetomium sp. by its phylogenetic and physiological analysis. One exopolysaccharide (EPS) fraction was isolated from the fermentation broth by ethanol precipitation and purified by gel filtration chromatography on Sepharose CL-6B. The molecular characteristics were examined by GC-MS, FT-IR, and multiangle laser light scattering (MALLS). Results: The monosaccharide composition analysis indicated that the purified EPS was mainly composed of glucose, mannose, arabinose, and galactose with the molecular ratio of 78.29: 8.99: 8.64: 4.08. FT-IR spectral analysis of the purified EPS revealed prominent characteristic groups, such as carbonyl bond, pyranose ring, and so on. The weight-average molar mass and the polydispersity ratio of the EPS were revealed to be 1.961×104 g/mol and 1.838, respectively. Furthermore, thermo gravimetric analysis (TGA) indicated that the degradation temperature of the purified EPS was 305° C. The purified EPS from the endophytic fungus Chaetomium sp. displayed antioxidant and antiproliferative activities. Conclusion: The results demonstrated that the EPS could be used as a healthful food and material source in pharmaceutical industries. SUMMARY An exopolysaccharides (EPS) with antioxidant and antiproliferative activities from an endophytic fungus Chaetomium sp. was reported. Abbreviations used: ANOVA: Analysis of variance; DPPH: 2,2-diphenyl-1-picrylhydrazyl; EPS: Exopolysaccharide; FT-IR: Fourier transform infrared spectroscopy; GC-MS: Gas chromatography–mass spectrometry; Mw: Mass weight; MALLS: Multiangle laser light scattering; SEC: Size Exclusion Chomatography; SPSS: Statistical Package of the Social Science; TGA: Thermo gravimetric analysis; TFA: Trifluoroacetic acid.
机译:背景:药用植物内生菌中的许多胞外多糖具有多种潜在的生物活性。材料与方法:从中草药绞股蓝的叶片中分离出内生真菌JY25,鉴定为Chaetomium sp。通过其系统发育和生理分析。通过乙醇沉淀从发酵液中分离出一种胞外多糖(EPS)馏分,并在Sepharose CL-6B上通过凝胶过滤色谱法进行纯化。通过GC-MS,FT-IR和多角度激光散射(MALLS)检查了分子特性。结果:单糖组成分析表明,纯化的EPS主要由葡萄糖,甘露糖,阿拉伯糖和半乳糖组成,分子比为78.​​29:8.99:8.64:4.08。纯化的EPS的FT-IR光谱分析显示了突出的特征基团,例如羰基键,吡喃糖环等。 EPS的重均摩尔质量和多分散度比分别为1.961×10 4 g / mol和1.838。此外,热重分析(TGA)表明纯化的EPS的降解温度为305℃。内生真菌Chaetomium sp。的纯化EPS。显示出抗氧化和抗增殖活性。结论:结果表明,EPS可以用作制药行业的健康食品和材料来源。发明内容具有内生真菌Chaetomium sp。的抗氧化和抗增殖活性的胞外多糖(EPS)。已经报道。使用的缩写:方差分析:方差分析; DPPH:2,2-二苯基-1-吡啶并肼基; EPS:胞外多糖; FT-IR:傅立叶变换红外光谱; GC-MS:气相色谱-质谱联用;分子量:质量重量;商场:多角度激光散射; SEC:尺寸排阻色谱法; SPSS:社会科学统计资料包; TGA:热重分析; TFA:三氟乙酸。

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