Graduate School of Pharmaceutical Sciences, Duquesne University, Pittsburgh, Pennsylvania 15282, USA.
AAPS PharmSciTech. 2011 Jun;12(2):453-60. doi: 10.1208/s12249-011-9587-0. Epub 2011 Mar 25.
The purpose of this study is to determine whether sodium alginate solutions' rheological parameters are meaningful relative to sodium alginate's use in the formulation of calcium alginate gels. Calcium alginate gels were prepared from six different grades of sodium alginate (FMC Biopolymer), one of which was available in ten batches. Cylindrical gel samples were prepared from each of the gels and subjected to compression to fracture on an Instron Universal Testing Machine, equipped with a 1-kN load cell, at a cross-head speed of 120 mm/min. Among the grades with similar % G, (grades 1, 3, and 4), there is a significant correlation between deformation work (L(E)) and apparent viscosity (η(app)). However, the results for the partial correlation analysis for all six grades of sodium alginate show that L(E) is significantly correlated with % G, but not with the rheological properties of the sodium alginate solutions. Studies of the ten batches of one grade of sodium alginate show that η(app) of their solutions did not correlate with L(E) while tan δ was significantly, but minimally, correlated to L(E). These results suggest that other factors--polydispersity and the randomness of guluronic acid sequencing--are likely to influence the mechanical properties of the resultant gels. In summary, the rheological properties of solutions for different grades of sodium alginate are not indicative of the resultant gel properties. Inter-batch differences in the rheological behavior for one specific grade of sodium alginate were insufficient to predict the corresponding calcium alginate gel's mechanical properties.
本研究旨在确定海藻酸钠溶液的流变学参数是否与其在藻酸钙凝胶配方中的应用有关。从六种不同等级的海藻酸钠(FMC 生物聚合物)中制备藻酸钙凝胶,其中一种有十个批次。从每种凝胶中制备圆柱形凝胶样品,并在配备 1kN 负载单元的 Instron 万能试验机上以 120mm/min 的十字头速度进行压缩至断裂。在具有相似 %G(等级 1、3 和 4)的等级中,变形功(L(E))和表观粘度(η(app))之间存在显著相关性。然而,对所有六种海藻酸钠等级的偏相关分析结果表明,L(E)与 %G 显著相关,但与海藻酸钠溶液的流变性质无关。对一种等级的十个批次的研究表明,它们溶液的 η(app)与 L(E)不相关,而 tan δ 与 L(E)显著相关,但相关性极小。这些结果表明,其他因素——多分散性和甘露糖醛酸序列的随机性——可能会影响所得凝胶的机械性能。总之,不同等级的海藻酸钠溶液的流变学性质并不能说明所得凝胶的性质。特定等级的海藻酸钠的流变行为的批间差异不足以预测相应的藻酸钙凝胶的机械性能。