Du Bin, Li Xiao-Tian, Zhao Ya, A You-Mei, Zhang Zhen-Zhong
School of Pharmacy, Zhengzhou University, PR China.
Pharmazie. 2010 Jul;65(7):471-6.
Poorly water-soluble compounds are difficult to develop as drug products using conventional formulation techniques and are frequently abandoned early in discovery. In the present study, a nanoprecipitation-high-frequency ultrasonication technique was adapted to produce drug nanosuspensions. The formulation of 2-methoxyestradiol (2-ME) as nanosuspension, either in the form of lyophilized powder or granules, was very successful in enhancing dissolution rate, more 45 times than bulk 2-ME being dissolved in the first 10 min. The increase in vitro dissolution rate may favourably affect bioavailability. The nanosuspension produced was then characterized using particle size determination, zeta potential measurement, scanning electron microscopy (SEM), differential scanning calorimetry (DSC) and X-ray analysis. Results showed that freeze-dried nanosuspension composed of amorphous particles with a mean particle size of 244 +/- 10.6 nm (polydispersity index of 0.21 +/- 0.02) was obtained. Physical stability studies showed that 2-ME nanosuspension remained homogeneous with slight increase in mean particle size and polydispersity index over a 3-month period.
水溶性差的化合物难以使用传统制剂技术开发成药品,并且在发现早期经常被放弃。在本研究中,采用了纳米沉淀-高频超声技术来制备药物纳米混悬液。将2-甲氧基雌二醇(2-ME)制成纳米混悬液,无论是冻干粉末形式还是颗粒形式,都非常成功地提高了溶出速率,在前10分钟内,纳米混悬液的溶出量比原料药2-ME多45倍。体外溶出速率的提高可能会对生物利用度产生有利影响。然后使用粒度测定、zeta电位测量、扫描电子显微镜(SEM)、差示扫描量热法(DSC)和X射线分析对制备的纳米混悬液进行表征。结果表明,得到了由无定形颗粒组成的冻干纳米混悬液,平均粒径为244±10.6 nm(多分散指数为0.21±0.02)。物理稳定性研究表明,2-ME纳米混悬液在3个月内保持均匀,平均粒径和多分散指数略有增加。