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Isolation Purification and Antioxidant Activity of The Polysaccharides from Chinese Truffle Tuber sinense

机译:中国松露块茎扭曲多糖的分离纯化和抗氧化活性

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摘要

The content of polysaccharides in was investigated by isolation and purification, followed with the further antioxidant studies in total reducing capacity and radical scavenging activities. The crude extract of polysaccharides was purified by dialysis, column chromatography, and High Performance Liquid Chromatography. The main components of monosaccharide (s) and molecular structure of single polysaccharide were studied by using methylation, GC-MS, and NMR analysis. One new water-soluble non-starch polysaccharide (PTS-A with the yield of 0.41%) from was purified and identified on structural characteristics for the first time. The characterizations of PTS-A were studied on physicochemical properties, main components of monosaccharide (s) and molecular structure. PTS-A was identified as glucan, only containing D-glucoses with the molecular structure of [→6) α-D-Glcp (1→6) α-D-Glcp (1→] by methylation analysis and NMR. In the determination of total reducing capacity, their reducing abilities could be listed as vitamin C> PTS-A> crude polysaccharides-3> crude polysaccharides-2> crude polysaccharides-1. All of PTS-A, crude polysaccharides-2 and -3 were relatively good scavenger for 1,1-Diphenyl-2-picrylhydrazyl radical 2,2-Diphenyl-1- (2,4,6-trinitrophenyl) hydrazyl radicals with the IC of 2.81, 4.17 and 3.44 mg/mL, respectively. Thus, the separation and purification of polysaccharides were significant to increase the antioxidant activity in some degree. One new water-soluble 1,6-α-ᴅ-dextran was discovered with the polysaccharide structure identified for the first time. Both PTS-A and crude extracts of polysaccharide performed a potent potential on antioxidant activities. The bioactivities of PTS-A should be generalized to the broader pharmacological effects.
机译:通过分离和纯化研究多糖的含量,随之进行进一步的抗氧化剂研究,总还原能力和激进清除活性。通过透析,柱色谱和高效液相色谱法纯化多糖的粗提物。通过使用甲基化,GC-MS和NMR分析研究单糖的主要组分和单次多糖的分子结构。从纯化的一种新的水溶性非淀粉多糖(PTS-A为0.41%的产率为0.41%),并首次以结构特征鉴定。研究了PTS-A的特征,研究了物理化学性质,单糖(S)和分子结构的主要成分。 PTS-A被鉴定为葡聚糖,仅含有通过甲基化分析和NMR的[→6)α-D-GLCP(1→6)α-D-GLCP(1→]的分子结构的D-葡萄糖。在测定中总还原能力,其还原能力可以作为维生素C> PTS-A>粗多糖-3>粗多糖-2>粗多糖-1。所有PTS-A,粗多糖-2和-3相对较好清除1,1-二苯基-2-普里德里酰基自由基2,2-二苯基-1-(2,4,6-三硝基苯基)肼,分别具有2.81,4.17和3.44mg / ml的IC。因此,分离多糖的纯化是显着的,在某种程度上增加了抗氧化活性。用首次鉴定的多糖结构发现了一种新的水溶性1,6-α-β-葡聚糖。PTS-A和多糖的粗提取物对抗氧化活性进行了有效的潜力。PTS-A的生物活动应该是广泛的Pharmacolo GING效应。

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