Ali Hany Sm, Khan Shahzeb, York Peter, Shah Syed Mukarram, Khan Jahangir, Hussain Zahid, Khan Barkat Ali
Department of Pharmaceutics and Pharmaceutical Technology, College of Pharmacy, Taibah University, KSA / Pharmaceutics Department, Faculty of Pharmacy, Assiut University, Egypt.
Department of Pharmacy, University of Malakand, Dir Lower, KPK, Pakistan.
Pak J Pharm Sci. 2017 Sep;30(5):1635-1643.
Drug nanosuspensions have gained tremendous attraction as a platform in drug delivery. In the present work, a nanosuspension was prepared by a wet milling approach in order to increase saturation solubility and dissolution of the water insoluble drug, hydrocortisone. Size of the generated particeles was 290 nm ± 9 nm having a zeta potential of -1.9 mV ± 0.6 mV. Nanosized particles were found to have a rod shape with a narrow particle size distribution (PDI =0.17). Results of differential scanning calorimetry and X-ray diffraction analyses revealed minor modifications of crystallinity of hydrocortisone following the milling process. Solubility of hydrocortisone was enhanced by nanonization to 875µg/ml ±2.5, an almost 2.9-fold compared to the raw hydrocortisone. Moreover, the nanosuspension formulation substabtially enhanced the dissolution rate of hydrocortisone where >97% of the hydrocortisone was dissolved within 10 minutes opposed to 22.3% for the raw 50% for the raw hydrocortisone and the commercial tablet, respectively. The bioavailability study resulted in AUC 0-9h for HC nanosuspensions (31.50±2.50), which is significantly (p<0.05) higher compared to the AUC (14.85±3.25) resulted for HC solution. The nanosuspension was physically stable at room temperature for 24 months.
药物纳米混悬剂作为一种药物递送平台已获得了极大的关注。在本研究中,采用湿磨法制备了一种纳米混悬剂,以提高水不溶性药物氢化可的松的饱和溶解度和溶出度。所生成颗粒的大小为290 nm±9 nm,zeta电位为-1.9 mV±0.6 mV。发现纳米颗粒呈棒状,粒径分布窄(PDI = 0.17)。差示扫描量热法和X射线衍射分析结果显示,研磨过程后氢化可的松的结晶度有轻微改变。通过纳米化,氢化可的松的溶解度提高到875μg/ml±2.5,与原料药相比几乎提高了2.9倍。此外,纳米混悬剂配方显著提高了氢化可的松的溶出速率,其中>97%的氢化可的松在10分钟内溶解,而原料药和市售片剂分别为22.3%和50%。生物利用度研究结果显示,HC纳米混悬剂的AUC0-9h为(31.50±2.50),与HC溶液的AUC(14.85±3.25)相比有显著提高(p<0.05)。该纳米混悬剂在室温下物理稳定性可达24个月。