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Evaluation of mixed matrices of chitosan and fatty-acids filled into hard gelatin capsules as sustained-release hydrodynamically balanced systems

机译:壳聚糖和脂肪酸混合基质的评价填充到硬明胶胶囊中的持续释放流体动力学平衡系统

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The aim of this study was to utilize electrostatic interaction between chitosan (CS) and fatty-acids (FA) in designing mixed matrices filled into hard gelatin capsules as hydrodynamically balanced systems with slow drug-release. CS of low and high molecular weight (Mwt), lauric acid (LA), stearic acid (SA) and palmitic acid (PA) were used for this purpose. Riboflavin, known to have narrow absorption window in the upper gastrointestinal tract, was used as a model drug.The interaction of CS with each FA was evaluated by kneading effervescent (Eff.) or non-effervescent (non-Eff.) CS-FA mixtures using 0.1?M HCl. The mixtures differed with respect to CS Mwt, FA type and CS:FA weight ratio. Upon drying, the mixtures were evaluated for CS-FA interaction using Fourier transform infrared spectroscopy (FT-IR). Eff. and non-Eff. mixtures of optimal CS:FA ratio for the interaction containing riboflavin were prepared as granulations and filled into hard gelatin capsules. The capsules were observed for flotation of their matrices and studied for drug-release in 0.1?M HCl.Evident interaction between CS and each FA was demonstrated in 0.1?M HCl, irrespective of CS Mwt. However, drug-release was highly affected by CS Mwt and FA type and was the slowest for low Mwt CS and LA as Eff. matrix or PA as non-Eff. matrix. The flotation of these matrices was rapid and prolonged (>6?h).
机译:该研究的目的是利用壳聚糖(Cs)和脂肪酸(FA)之间的静电相互作用在设计填充到硬明胶胶囊中的混合基质中作为具有缓慢药物释放的流体动力学平衡的系统。用于低和高分子量(MWT),月桂酸(LA),硬脂酸(SA)和棕榈酸(PA)的Cs用于此目的。已知在上胃肠道中具有窄吸收窗的核黄素用作模型药物。通过捏合泡腾(效果)或非泡腾(非效力)CS-FA来评价CS与每种Fa的Cs与每种Fa的相互作用。混合物使用0.1?​​M HCl。混合物相对于CS MWT,FA型和CS:FA重量比不同。干燥后,使用傅里叶变换红外光谱(FT-IR)评估混合物的CS-FA相互作用。 eff。和非eff。最佳CS的混合物:制备含有核黄素的相互作用的FA比作为颗粒,并填充到硬明胶胶囊中。观察到胶囊的基质浮选,并在0.1·m HCl.Evient elcient中研究了在0.1μmHCl之间的相互作用。然而,药物释放受Cs MWT和FA类型的影响,并且对于低MWT Cs和La的效果,是最慢的。矩阵或PA作为非效果。矩阵。这些基质的浮选迅速且延长(>6μl)。

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