Departamento de Farmacia y Tecnología Farmacéutica, Facultad de Farmacia, Universidad de Sevilla, c/Profesor García González n° 2, 41012 Sevilla, Spain.
Carbohydr Polym. 2013 Jan 30;92(1):149-56. doi: 10.1016/j.carbpol.2012.09.005. Epub 2012 Sep 13.
This study assesses the capacity of a new hydrophobically modified polysaccharide -hydroxypropyl cellulose-methyl methacrylate - to control drug release in semisolid formulations. The dispersed systems contain the new polymer, Igepal CO520 as surfactant and theophylline as model drug at three concentrations (0.5, 1 and 1.5%, w/w). Drug release study shows that the systems containing 0.5% (w/w) of drug have faster release and higher diffusion coefficient than the other two concentrations. These results can be explained by two different structures ("relaxed" and "structured") found from a rheological point of view. Also, this paper compares two different devices for testing drug release and diffusion. It has been obtained more reliable and reproducible results with Enhancer Cell respect to Franz diffusion cell. In both cases, Fickian diffusion was the mechanism predominant for all systems. Finally, the utility of this polymer has been demonstrated to make three-dimensional gel structure and control theophylline release from systems in topical application.
本研究评估了一种新型疏水改性多糖-羟丙基纤维素-甲基丙烯酸甲酯在半固体制剂中控制药物释放的能力。分散体系含有新型聚合物、吐温 80 作为表面活性剂和茶碱作为模型药物,浓度分别为 0.5%、1%和 1.5%(w/w)。药物释放研究表明,含 0.5%(w/w)药物的系统比其他两种浓度具有更快的释放和更高的扩散系数。这些结果可以从流变学的角度解释为两种不同的结构(“松弛”和“结构化”)。此外,本文比较了两种不同的测试药物释放和扩散的装置。与 Franz 扩散池相比,Enhancer Cell 获得了更可靠和可重复的结果。在两种情况下,所有系统均以菲克扩散为主导机制。最后,证明了该聚合物的用途是制备三维凝胶结构并控制局部应用系统中茶碱的释放。