Mennini Natascia, Maestrelli Francesca, Cirri Marzia, Mura Paola
Department of Chemistry, School of Human Health Sciences, University of Florence, Via Schiff 6, Sesto Fiorentino I-50019, Florence, Italy.
Department of Chemistry, School of Human Health Sciences, University of Florence, Via Schiff 6, Sesto Fiorentino I-50019, Florence, Italy.
J Pharm Biomed Anal. 2016 Sep 10;129:350-358. doi: 10.1016/j.jpba.2016.07.024. Epub 2016 Jul 18.
The influence of l-arginine on the complexing and solubilizing power of randomly-methylated-β-cyclodextrin (RameβCD) towards oxaprozin, a very poorly soluble anti-inflammatory drug, was examined. The interactions between the components were investigated both in solution, by phase-solubility analysis, and in the solid state, by differential scanning calorimetry, FTIR and X-ray powder diffractometry. The morphology of the solid products was examined by Scanning Electron Microscopy. Results of phase-solubility studies indicated that addition of arginine enhanced the RameβCD complexing and solubilizing power of about 3.0 and 4.5 times, respectively, in comparison with the binary complex (both at pH≈6.8). The effect of arginine was not simply additive, but synergistic, being the ternary system solubility higher than the sum of those of the respective drug-CD and drug-arginine binary systems. Solid equimolar ternary systems were prepared by physical mixing, co-grinding, coevaporation and kneading techniques, to explore the effect of the preparation method on the physicochemical properties of the final products. The ternary co-ground product exhibited a dramatic increase in both drug dissolution efficiency and percent dissolved at 60min, whose values (83.6 and 97.1, respectively) were about 3 times higher than the sum of those given by the respective drug-CD and drug-aminoacid binary systems. Therefore, the ternary co-ground system with arginine and RameβCD appears as a very valuable product for the development of new more effective delivery systems of oxaprozin, with improved safety and bioavailability.
研究了L-精氨酸对随机甲基化-β-环糊精(RameβCD)对奥沙普秦(一种极难溶性抗炎药物)的络合和增溶能力的影响。通过相溶解度分析在溶液中以及通过差示扫描量热法、傅里叶变换红外光谱和X射线粉末衍射法在固态下研究了各组分之间的相互作用。通过扫描电子显微镜检查了固体产物的形态。相溶解度研究结果表明,与二元络合物相比(均在pH≈6.8时),添加精氨酸分别使RameβCD的络合和增溶能力提高了约3.0倍和4.5倍。精氨酸的作用不是简单的相加,而是协同作用,三元体系的溶解度高于相应药物-CD和药物-精氨酸二元体系溶解度之和。通过物理混合、共研磨、共蒸发和捏合技术制备了等摩尔的固体三元体系,以探讨制备方法对最终产物理化性质的影响。三元共研磨产物在60分钟时的药物溶解效率和溶解百分比均显著增加,其值(分别为83.6和97.1)比相应药物-CD和药物-氨基酸二元体系的值之和高约3倍。因此,含精氨酸和RameβCD的三元共研磨体系似乎是开发新型更有效的奥沙普秦递送系统的非常有价值的产品,具有更高的安全性和生物利用度。