首页> 外文期刊>International Journal of Pharmaceutics >Compaction, compression and drug release properties of diclofenac sodium and ibuprofen pellets comprising xanthan gum as a sustained release agent.
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Compaction, compression and drug release properties of diclofenac sodium and ibuprofen pellets comprising xanthan gum as a sustained release agent.

机译:包含黄原胶作为持续释放剂的双氯芬酸钠和布洛芬小丸的压实,压缩和药物释放特性。

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Compaction and compression of xanthan gum pellets were evaluated and drug release from tablets made of pellets was characterised. Two types of pellets were prepared by extrusion-spheronisation. Formulations included xanthan gum, at 16% (w/w), diclofenac sodium or ibuprofen, at 10% (w/w), among other excipients. An amount of 500 mg of pellets fraction 1000-1400 microm were compacted in a single punch press at maximum punch pressure of 125 MPa using flat-faced punches (diameter of 1.00 cm). Physical properties of pellets and tablets were analysed. Laser profilometry analysis and scanning electron microscopy of the upper surface and the surface of fracture of tablets revealed that particles remained as coherent individual units after compression process. Pellets were flatted in the same direction of the applied stress evidencing a lost of the original curvature of the spherical unit. Pellets showed close compressibility degrees (49.9% for pellets comprising diclofenac sodium and 48.5% for pellets comprising ibuprofen). Xanthan gum pellets comprising diclofenac sodium experienced a reduction of 65.5% of their original sphericity while those comprising ibuprofen lost 49.6% of the original porosity. Permanent deformation and densification were the relevant mechanisms of compression. Fragmentation was regarded as non-existent. The release of the model drug from both type of tablets revealed different behaviours. Tablets made of pellets comprising ibuprofen released the model drug in a bimodal fashion and the release behaviour was characterised as Case II transport mechanism (release exponent of 0.93). On the other hand, the release behaviour of diclofenac sodium from tablets made of pellets was anomalous (release exponent of 0.70). For the latter case, drug diffusion and erosion were competing mechanisms of drug release.
机译:评估了黄原胶粒料的压实和压缩,并表征了由粒料制成的片剂的药物释放。通过挤出滚圆法制备了两种类型的粒料。制剂包括其他赋形剂,含量为16%(w / w)的黄原胶,含量为10%(w / w)的双氯芬酸钠或布洛芬。使用单头冲压机(直径为1.00 cm),在最大冲压压力为125 MPa的单冲压机中压制量为500 mg的颗粒1000-1400 microm。分析颗粒和片剂的物理性质。片剂的上表面和断裂表面的激光轮廓分析和扫描电子显微镜显示,压制过程后颗粒保留为相干的单个单元。球粒在所施加应力的相同方向上变平,表明失去了球形单元的原始曲率。药丸显示出接近的可压缩度(对于包含双氯芬酸钠的丸为49.9%,对于包含布洛芬的丸为48.5%)。包含双氯芬酸钠的黄原胶颗粒的原始球形度降低了65.5%,而包含布洛芬的颗粒的原始孔隙度降低了49.6%。永久变形和致密化是压缩的相关机制。碎片被认为是不存在的。从两种类型的片剂中释放模型药物均显示出不同的行为。由包含布洛芬的小丸制成的片剂以双峰形式释放模型药物,其释放行为表征为Case II转运机制(释放指数为0.93)。另一方面,双氯芬酸钠从小丸制成的片剂中的释放行为是异常的(释放指数为0.70)。对于后一种情况,药物扩散和侵蚀是药物释放的竞争机制。

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