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Preparation and characterisation of alendronate-loaded chitosan microparticles obtained through the spray drying technique.

机译:通过喷雾干燥技术获得的负载阿仑膦酸盐的壳聚糖微粒的制备和表征。

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摘要

Microparticles of chitosan (CHT) containing alendronate sodium (AL) were prepared in four drug:polymer ratios (1:1, 1:2, 1:4, 1:6) using the spray drying technique. The efficiency of the method was evaluated by determining production yield (about 70 %) and microencapsulation efficiency, which was almost 100 % in the case of all four of the formulations studied. Particles had a mean size of between 3.6 and 4.6 microm, and a near-spherical shape. The formulations with the highest content of AL (drug:polymer ratio 1:1 and 1:2) showed an asymmetrical distribution of particles, which were larger in size, and had a higher proportion of irregular particles than the other formulations. FT-IR analysis revealed an ionic interaction between AL and CHT. Differential scanning calorimetry and thermogravimetric analysis confirmed the microencapsulation of AL and the increased thermal stability of encapsulated AL. The dissolution profiles of AL from CHT microspheres, at pH values of 1.2 and 6.8, showed a delayed release of AL from microspheres, and the dissolution rate was dependent on the pH and the drug:polymer ratio. It can be concluded that spray drying is a suitable technique for preparing AL-loaded CHT microspheres, and that the drug:polymer ratio can be used to control the rate of AL release from microspheres.
机译:使用喷雾干燥技术,以四种药物:聚合物比率(1:1、1:2、1:4、1:6)制备含有阿仑膦酸钠(AL)的壳聚糖(CHT)微粒。通过确定产量(约70%)和微囊化效率来评估该方法的效率,在所研究的所有四种制剂中,微囊化效率均接近100%。颗粒的平均尺寸在3.6至4.6微米之间,并且接近球形。 AL含量最高的制剂(药物:聚合物比为1:1和1:2)显示出颗粒的不对称分布,其尺寸更大,并且与其他制剂相比,不规则颗粒的比例更高。 FT-IR分析表明AL与CHT之间存在离子相互作用。差示扫描量热法和热重分析法证实了AL的微囊化和囊封的AL的热稳定性提高。 pH值为1.2和6.8时,CHT微球中AL的溶出曲线表明AL从微球中的释放有所延迟,溶出速率取决于pH值和药物:聚合物的比例。可以得出结论,喷雾干燥是制备载有AL的CHT微球的合适技术,并且药物:聚合物的比例可用于控制AL从微球的释放速率。

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