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通过原子力显微镜观察聚集和未聚集的κ-卡拉胶螺旋体的微观结构。

Microstructure of aggregated and nonaggregated kappa-carrageenan helices visualized by atomic force microscopy.

作者信息

Ikeda S, Morris V J, Nishinari K

机构信息

Department of Food and Nutrition, Osaka City University, Sumiyoshi, Osaka 558-8585, Japan. ikedalife.osaka-cu.ac.jp

出版信息

Biomacromolecules. 2001 Winter;2(4):1331-7. doi: 10.1021/bm015610l.

Abstract

Gelation of kappa-carrageenan is believed to involve two steps: helix formation on cooling and a further specific cation (salt) induced side-by-side aggregation of helices. Samples that should contain aggregated and also nonaggregated "helices" of kappa-carrageenan were prepared in aqueous solutions, spread onto freshly cleaved mica surfaces, and visualized under butanol using atomic force microscopy. In the presence of an excessive amount of a gel-promoting salt, KCl, kappa-carrageenan appeared to form rigid rodlike structures considered as large aggregates of double helices. Even when the side-by-side interhelical aggregation was suppressed by diluting random coiled solutions prior to cooling, by adding an aggregation-impeding salt, NaI, or by transforming kappa-carrageenan into the tetramethylammonium (TMA) salt, branched rodlike structures were still evident, suggesting that the side-by-side aggregation of helices is not a prerequisite for kappa-carrageenan to form a network structure, at least locally. Even in the absence of factors that promote side-by-side aggregation, kappa-carrageenan helices appeared to be capable of associating and forming gel networks.

摘要

κ-卡拉胶的凝胶化过程被认为涉及两个步骤:冷却时形成螺旋结构,以及进一步由特定阳离子(盐)诱导螺旋结构并排聚集。将应含有κ-卡拉胶聚集和未聚集“螺旋体”的样品在水溶液中制备,铺展在新劈开的云母表面上,并在丁醇下使用原子力显微镜进行观察。在存在过量促进凝胶化的盐(KCl)的情况下,κ-卡拉胶似乎形成了被认为是双螺旋大聚集体的刚性棒状结构。即使通过在冷却前稀释无规卷曲溶液、添加阻碍聚集的盐(NaI)或通过将κ-卡拉胶转化为四甲基铵(TMA)盐来抑制并排螺旋间聚集,分支棒状结构仍然明显,这表明螺旋的并排聚集至少在局部不是κ-卡拉胶形成网络结构的先决条件。即使在没有促进并排聚集的因素的情况下,κ-卡拉胶螺旋体似乎也能够缔合并形成凝胶网络。

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