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在钙离子和钾离子存在的情况下多糖凝胶层的形成:测量与机制

Formation of polysaccharide gel layers in the presence of Ca2+ and K+ ions: measurements and mechanisms.

作者信息

de Kerchove Alexis J, Elimelech Menachem

机构信息

Department of Chemical Engineering, Environmental Engineering Program, Yale University, P.O. Box 208286, New Haven, Connecticut 06520-8286, USA.

出版信息

Biomacromolecules. 2007 Jan;8(1):113-21. doi: 10.1021/bm060670i.

Abstract

Understanding the adsorption properties of polysaccharides in terms of substrate affinity, kinetics, and layer structure is of paramount importance in numerous industrial and natural systems. The structural growth of the layers of two model polysaccharides--sodium alginate and polygalacturonic acid (PGA)--was characterized by quartz crystal microbalance with dissipation and atomic force microscopy. Monitoring the variations in frequency and dissipation energy provides insights into both the average adsorbed mass and the viscoelastic properties of the adsorbed layer of polyelectrolytes along with the associated ions and water molecules. Both polysaccharides had similar adsorption patterns with increasing ionic strengths and showed significant complexation of calcium ions. In the presence of calcium, the alginate gel layer exhibited significant swelling with an increasing concentration of monovalent salt that the PGA gel layer did not manifest. Basing our discussion on the "egg-box model", we interpreted these different swelling behaviors as resulting from differences in the complexation modes of the two polysaccharides. The dimerization of the polymers by cross-linking and the weaker dimer-dimer associations play major roles in the sensitivity of the polysaccharide gel matrix to high salt concentration environments.

摘要

从底物亲和力、动力学和层结构方面理解多糖的吸附特性在众多工业和自然系统中至关重要。通过具有耗散功能的石英晶体微天平及原子力显微镜对两种模型多糖——海藻酸钠和聚半乳糖醛酸(PGA)——的层结构生长进行了表征。监测频率和耗散能量的变化能够深入了解聚电解质吸附层连同相关离子和水分子的平均吸附质量及粘弹性特性。两种多糖在离子强度增加时具有相似的吸附模式,且均表现出钙离子的显著络合。在有钙存在的情况下,海藻酸盐凝胶层随单价盐浓度增加呈现出显著膨胀,而PGA凝胶层未表现出这种现象。基于“蛋盒模型”进行讨论,我们将这些不同的膨胀行为解释为两种多糖络合模式差异所致。聚合物通过交联形成二聚体以及较弱的二聚体-二聚体缔合在多糖凝胶基质对高盐浓度环境的敏感性中起主要作用。

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