Rojas Cinthia Carola, Wahlund Karl-Gustav, Bergenståhl Björn, Nilsson Lars
Division of Food Technology, Faculty of Engineering LTH, Lund University, Post Office Box 124, S-221 00 Lund, Sweden.
Biomacromolecules. 2008 Jun;9(6):1684-90. doi: 10.1021/bm800127n.
In this paper we aim to understand the size/conformation relationship in waxy barley starch, a polydisperse and ultrahigh molar mass biomacromolecule. Characterizations are performed with asymmetrical flow field-flow fractionation (AsFlFFF). Furthermore, we study the effect of homogenization on the molar mass, rms radius (r rms) and hydrodynamic radius (r h). For the untreated sample, the macromolecules are elongated objects with low apparent density. As a result of homogenization, molar mass, and r rms decrease, while r h remains unaffected. The process also induces an increase, and scaling with size, of apparent density as well as changes in conformation, represented qualitatively by r rms/ r h. Finally, results from AsFlFFF are compared with viscosimetry and discussed in terms of concentration and close-packing in relation to macromolecular shape and conformation. Hence, the results show that AsFlFFF and our novel methodology enable the determination of several physical properties with high relevance for the solution behavior of polydisperse macromolecules.
在本文中,我们旨在了解蜡质大麦淀粉(一种多分散且超高摩尔质量的生物大分子)的尺寸/构象关系。采用不对称流场-流分级法(AsFlFFF)进行表征。此外,我们研究了均质化对摩尔质量、均方根半径(r rms)和流体力学半径(r h)的影响。对于未处理的样品,大分子是具有低表观密度的细长物体。均质化的结果是摩尔质量和r rms减小,而r h不受影响。该过程还导致表观密度增加并随尺寸缩放,以及构象变化,以r rms/r h定性表示。最后,将AsFlFFF的结果与粘度测定法进行比较,并根据与大分子形状和构象相关的浓度和紧密堆积进行讨论。因此,结果表明AsFlFFF和我们的新方法能够测定与多分散大分子溶液行为高度相关的几种物理性质。