首页> 外文期刊>Journal of pharmaceutical sciences. >An investigation into the mechanism of dissolution rate enhancement of poorly water-soluble drugs from spray chilled gelucire 50/13 microspheres.
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An investigation into the mechanism of dissolution rate enhancement of poorly water-soluble drugs from spray chilled gelucire 50/13 microspheres.

机译:喷雾冷冻型细菌50/13微球溶出速率增强溶出速率溶出速率的调查。

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摘要

The production and physicochemical characterisation of spray chilled Gelucire 50/13 microspheres is described with a view to improving the dissolution of a poorly water-soluble drug, piroxicam, and understanding the fundamental mechanisms associated with the improved drug release. Thermorheological testing was developed as a fast screening method for predicting the processability of dispersions for spray chilling preparation. Spray chilled piroxicam loaded microspheres were spherical in shape with a median diameter of circa 150 microm. DSC indicated no interaction between piroxicam and lipid matrix, while HSM studies performed in polarized light mode indicated that the spheres contained distinct drug crystals. Polarising light microscopy and small-angle XRD investigations on the hydration behaviour of the lipid and the spray chilled microspheres revealed the formation of liquid crystalline phases depending on the degree of hydration. The dissolution behaviour of the piroxicam loaded microspheres showed significant improvements compared to drug alone. The particle size, drug loading and aging of the microspheres were all found to have an influence on the release behaviour. It was proposed that Gelucire 50/13 microspheres release the entrapped piroxicam via formation of a lyotropic liquid crystalline phase, which allows dissolution of the drug particles in a finely divided, high surface area and well-wetted state.
机译:描述了喷雾冷却Gelucire 50/13微球的生产和物理化学表征,以改善水溶性药物,吡霉蛋白,并理解与改善的药物释放相关的基本机制的溶解。热流学检测是一种快速筛选方法,用于预测喷雾冷却制剂的分散性的可加工性。喷雾冷却的吡洛昔康装载的微球是球形的,中间为150微米的中值。 DSC表明吡洛昔康和脂质基质之间的相互作用,而在偏振光模式下进行的HSM研究表明该球体含有不同的药物晶体。偏振光显微镜和小角度XRD研究对脂质的水化行为和喷雾冷却的微球,揭示了根据水合度的液晶相的形成。单独的单独溶解的微球的溶解行为显示出显着的改善。粒径,药物加载和老化的粒度都被发现对释放行为有影响。提出了Gelucire 50/13微球通过形成旋转液晶相释放捕获的吡脲,这允许在细分的高表面积和漂湿的状态下溶解药物颗粒。

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