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首页> 外文期刊>Carbohydrate research >Effects of urea and sodium hydroxide on the molecular weight and conformation of alpha-(1 -> 3)-D-glucan from Lentinus edodes in aqueous solution
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Effects of urea and sodium hydroxide on the molecular weight and conformation of alpha-(1 -> 3)-D-glucan from Lentinus edodes in aqueous solution

机译:尿素和氢氧化钠对香菇中香菇α-(1-> 3)-D-葡聚糖的分子量和构象的影响

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摘要

The weight-average molecular weight (M-w) and intrinsic viscosity ([eta]) of the alpha-(1 --> 3)-D-glucan (L-FV-II) from Lentinus edodes in 0.5 and 1.0 M NaOH aqueous solution containing urea, were studied by light scattering and viscometry. The M-w value of the glucan decreased with increase of the urea and NaOH concentration. A strong intermolecular hydrogen bonding confers water-insolubility on the glucan, but NaOH and especially urea, broke this hydrogen bonding leading to enhanced water-solubility. Use of 1.0 M urea-1.0 M NaOH as solvent broke not only intermolecular hydrogen bonds but also partial covalent bonds of the a-glucan in aqueous solution, resulting in a decrease of M-w and [eta]. The urea and NaOH concentrations, storage time with stirring, and mode of preparation of the polysaccharide in aqueous solution significantly affected the determination of M-w and [eta]. The dependences of specific rotation and fluorescence emission ratio of a probe on urea concentration showed that a change in the molecular conformation of the alpha-glucan in 0.5 M NaOH aqueous solution containing urea occurred in the range 0.3-0.6 M urea. The 0.5 M urea-0.5 M NaOH aqueous solution is a suitable solvent for the glucan, and the M-w and [eta] values obtained were 5.21 x 10(5) and 148 cm(3) g(-1), respectively. Degradation of the glucan was obvious after storage for 15 months. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 21]
机译:在0.5和1.0 M NaOH水溶液中来自香菇的α-(1-> 3)-D-葡聚糖(L-FV-II)的重均分子量(Mw)和特性粘度(η)通过光散射和粘度法研究了含有尿素的尿素。葡聚糖的M-w值随尿素和NaOH浓度的增加而降低。强大的分子间氢键使葡聚糖具有水不溶性,但NaOH(尤其是尿素)破坏了氢键,从而提高了水溶性。使用1.0M尿素-1.0M NaOH作为溶剂不仅破坏了α-葡聚糖在水溶液中的分子间氢键,而且破坏了部分共价键,导致M-w和η降低。尿素和NaOH的浓度,搅拌下的储存时间以及水溶液中多糖的制备方式显着影响了M-w和η的测定。探针的比旋光度和荧光发射率对尿素浓度的依赖性表明,在含尿素的0.5M NaOH水溶液中,α-葡聚糖的分子构象变化发生在0.3-0.6M尿素范围内。 0.5M尿素-0.5M NaOH水溶液是葡聚糖的合适溶剂,并且获得的M-w和η值分别为5.21×10(5)和148cm(3)g(-1)。储存15个月后,葡聚糖的降解是明显的。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:21]

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