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用于阳离子马铃薯支链淀粉分子量表征的不对称流场流分馏-多角度激光光散射分析的发展

Development of asymmetrical flow field-flow fractionation-multi angle laser light scattering analysis for molecular mass characterization of cationic potato amylopectin.

作者信息

Lee Seungho, Nilsson Per-Ola, Nilsson Gunilla S, Wahlund Karl-Gustav

机构信息

Division of Technical Analytical Chemistry, Center for Chemistry and Chemical Engineering, Lund University, P.O. Box 124, S-221 00 Lund, Sweden.

出版信息

J Chromatogr A. 2003 Sep 5;1011(1-2):111-23. doi: 10.1016/s0021-9673(03)01144-0.

Abstract

The goal of this study is to investigate the applicability of asymmetrical flow field-flow fractionation (AsFlFFF)-multi angle laser light scattering (MALLS), and to develop a method for analysis of cationic potato amylopectin (CPAP) having ultrahigh molecular mass (UHMr). Use of the aqueous carrier having low salt content (3 mM NaN3) resulted in a distortion in AsFlFFF fractograms of CPAP with a general pattern of a sharp rise at the beginning of the elution followed by a long tailing, probably due to combination of attractive and repulsive charge interactions (attractive interaction between CPAP molecules and the channel membrane, and repulsion among cationic CPAP molecules). As the cross flow-rate (Fc) increases, the tailing tends to increase, and the repeatability of the AsFlFFF retention data tends to decrease, which is an indication of the presence of the charge interactions. The tailing gradually decreased, and the repeatability of the AsFIFFF retention data increased, as the salt content of the carrier increased. The distortion of the fractogram finally disappeared at Fc of about 0.2 ml/min and the channel flow-rate (F(out)) of about 1 ml/min with the aqueous carrier having the salt content of 40 mM (3 mM NaN3 +37 mM NaNO3). The weight-average molecular mass (Mw) and the z-average radius of gyration ((rg),) determined by MALLS were 5.2 x 10(7) and 34 x 10(1) nm, respectively. With the flow-rate ratio, Fc/F(out) kept constant, the degree of the charge interactions (and thus the distortion of fractogram) seems to increase with the cross flow-rate (Fc) and with the sample injection mass. AsFIFFF-MALLS was applied for determination of molecular mass distributions (MrDs) and the sizes of CPAPs prepared by various cooking procedures.

摘要

本研究的目的是研究不对称流场流分馏(AsFlFFF)-多角度激光光散射(MALLS)的适用性,并开发一种分析具有超高分子量(UHMr)的阳离子马铃薯支链淀粉(CPAP)的方法。使用低盐含量(3 mM NaN₃)的水性载体导致CPAP的AsFlFFF分形图出现畸变,其一般模式是洗脱开始时急剧上升,随后是长拖尾,这可能是由于吸引和排斥电荷相互作用的组合(CPAP分子与通道膜之间的吸引相互作用以及阳离子CPAP分子之间的排斥)。随着错流速率(Fc)增加,拖尾趋于增加,AsFlFFF保留数据的重复性趋于降低,这表明存在电荷相互作用。随着载体盐含量的增加,拖尾逐渐减少,AsFIFFF保留数据的重复性增加。当载体盐含量为40 mM(3 mM NaN₃ + 37 mM NaNO₃)时,在约0.2 ml/min的Fc和约1 ml/min的通道流速(F(out))下,分形图的畸变最终消失。通过MALLS测定的重均分子量(Mw)和z-平均回转半径((rg))分别为5.2×10⁷和34×10¹ nm。在流速比Fc/F(out)保持恒定的情况下,电荷相互作用的程度(以及因此分形图的畸变)似乎随着错流速率(Fc)和样品进样质量的增加而增加。AsFIFFF-MALLS用于测定通过各种烹饪程序制备的CPAP的分子量分布(MrDs)和尺寸。

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