Crossingham Yazmin J, Kerr Philip G, Kennedy Ross A
School of Biomedical Sciences, Charles Sturt University, Locked Bag 588, Wagga Wagga, NSW 2678, Australia.
School of Biomedical Sciences, Charles Sturt University, Locked Bag 588, Wagga Wagga, NSW 2678, Australia.
Int J Pharm. 2014 Oct 1;473(1-2):259-69. doi: 10.1016/j.ijpharm.2014.06.043. Epub 2014 Jun 26.
Sodium alginate (SA) is a naturally occurring, non-toxic, polysaccharide that is able to form gels after exposure to calcium. These gels have been used in food and biomedical industries. This is the first direct comparison of two different methods of calcium alginate film production, namely interfacial gelation (IFG) and dry cast gelation (DCG). IFG films were significantly thicker than DCG films, and were more extensively rehydrated in water and 0.1M HCl than the DCG films. During rehydration in 0.1M HCl almost all calcium ions were lost. Under scanning electron microscopy, IFG films appeared less dense than DCG films. IFG films were mechanically weaker than DCG films, and both types of film were weaker after rehydration in 0.1M HCl compared with deionized water. Permeation of theophylline (TPL) was evaluated in-vitro; the diffusion coefficient (D) of the TPL was almost 90 times lower in DCG films than IFG films when both were rehydrated in water. Although the 0.1M HCl rendered both gels more permeable to TPL, D of TPL was still about five times lower in DCG compared to IFG films. The evaluation of selected physico-chemical properties of films is important, since this information may inform the choice of gelation technique used to produce calcium alginate coatings on pharmaceutical products.
海藻酸钠(SA)是一种天然存在的无毒多糖,在接触钙后能够形成凝胶。这些凝胶已应用于食品和生物医学行业。这是首次对两种不同的海藻酸钙薄膜生产方法进行直接比较,即界面凝胶化(IFG)和干铸凝胶化(DCG)。IFG薄膜比DCG薄膜厚得多,并且在水中和0.1M盐酸中的再水化程度比DCG薄膜更高。在0.1M盐酸中再水化过程中,几乎所有钙离子都会流失。在扫描电子显微镜下,IFG薄膜看起来比DCG薄膜密度更低。IFG薄膜的机械强度比DCG薄膜弱,并且在0.1M盐酸中再水化后,与去离子水相比,两种类型的薄膜强度都更低。对茶碱(TPL)的渗透进行了体外评估;当两种薄膜在水中再水化时,DCG薄膜中TPL的扩散系数(D)几乎比IFG薄膜低90倍。尽管0.1M盐酸使两种凝胶对TPL的渗透性更高,但与IFG薄膜相比,DCG中TPL的D仍然低约五倍。对薄膜选定物理化学性质的评估很重要,因为这些信息可能有助于为在药品上生产海藻酸钙涂层所使用的凝胶化技术选择提供参考。