Dai Wei-Guo, Dong Liang C, Song Yan-Qiu
ALZA Corporation, 1900 Charleston Road, Mountain View, CA 94039, USA.
Int J Pharm. 2007 Sep 5;342(1-2):201-7. doi: 10.1016/j.ijpharm.2007.04.032. Epub 2007 May 6.
In this study, we present a novel approach of nanosizing a drug/polymeric complex to increase both solubility and dissolution rate of poorly water-soluble compounds. A hydrophilic polymer, lambda-carrageenan, was first complexed with a model poorly water-soluble compound to increase the compound's aqueous solubility. The compound/carrageenan complex was further nanosized by wet-milling to enhance the dissolution rate. By complexing with carrageenan, the compound became amorphous in the complex. Using additional carrageenan as a stabilizer for nanosizing, a nanosuspension of a compound/carrageenan complex with a median particle size of about 0.3 microm was successfully developed. The particle size of the nanosuspension did not increase significantly during the lyophilization process and was stable for at least 39 days at room temperature after lyophilization. This approach of nanosizing a drug/carrageenan complex increased the aqueous solubility of the compound from less than 1 microg/mL to 39 microg/mL. In addition to increasing aqueous solubility, a nanosized compound/carrageenan complex had a faster dissolution rate than the complex, the free compound, and the nanosuspension of the free compound.
在本研究中,我们提出了一种将药物/聚合物复合物纳米化的新方法,以提高难溶性化合物的溶解度和溶解速率。首先将亲水性聚合物λ-角叉菜胶与一种难溶性模型化合物络合,以增加该化合物在水中的溶解度。通过湿磨进一步将化合物/角叉菜胶复合物纳米化,以提高溶解速率。通过与角叉菜胶络合,化合物在复合物中变为无定形。使用额外的角叉菜胶作为纳米化的稳定剂,成功制备了一种化合物/角叉菜胶复合物的纳米混悬液,其平均粒径约为0.3微米。纳米混悬液的粒径在冻干过程中没有显著增加,冻干后在室温下至少稳定39天。这种将药物/角叉菜胶复合物纳米化的方法使化合物的水溶性从小于1微克/毫升提高到39微克/毫升。除了增加水溶性外,纳米化的化合物/角叉菜胶复合物的溶解速率比复合物、游离化合物和游离化合物的纳米混悬液更快。