Zeng Ying-Chun, Li Sha, Liu Chang, Gong Tao, Sun Xun, Fu Yao, Zhang Zhi-Rong
Key Laboratory of Drug Targeting and Drug Delivery Systems, Ministry of Education, West China School of Pharmacy, Sichuan University, Chengdu 610041, China.
Acta Pharmacol Sin. 2017 Mar;38(3):424-433. doi: 10.1038/aps.2016.126. Epub 2017 Jan 23.
Scopoletin is an active coumarin possessing a variety of pharmacological activities, including anti-hyperuricemic effect, but with poor solubility. To improve its oral bioavailability, we attempted to encapsulate scopoletin into Soluplus micelles (Soluplus-based scopoletin micelles, Sco-Ms) and evaluated the hypouricemic action of Sco-Ms. Sco-Ms were prepared using a thin-film hydration method. Sco-Ms displayed near spherical shapes with an average size of 59.4±2.4 nm (PDI=0.08±0.02). The encapsulation efficiency of scopoletin was 87.3%±1.5% with a loading capacity of 5.5%±0.1%. Sco-Ms were further characterized using transmission electron microscopy, powder X-ray diffraction, Fourier transform infrared techniques and scanning electron microscopy. After oral administration in rats, Sco-Ms exhibited significantly improved absorption in each intestinal segment compared to free scopoletin, with the duodenum and jejunum being the main absorption regions. In rats administered Sco-Ms (at an equivalent dose of free scopoletin of 100 mg/kg, po), the AUC and C of Sco-Ms were 4.38- and 8.43-fold, respectively, as large as those obtained following administration of free scopoletin. After oral administration in rats, Sco-Ms did not alter the tissue distributions of scopoletin, but significantly increased the scopoletin levels in the liver. In potassium oxonate-induced hyperuricemic mice, oral administration of Sco-Ms (at an equivalent dose of free scopoletin of 300 mg/kg) reduced the serum uric acid concentration to the normal level. The results suggest that Soluplus-based micelle system greatly improves the bioavailability of poorly water-soluble drugs, such as scopoletin, and represents a promising strategy for their oral delivery.
七叶亭是一种具有多种药理活性的活性香豆素,包括抗高尿酸血症作用,但溶解度较差。为提高其口服生物利用度,我们尝试将七叶亭包封于固体分散体胶束(基于固体分散体的七叶亭胶束,Sco-Ms)中,并评估了Sco-Ms的降尿酸作用。采用薄膜水化法制备Sco-Ms。Sco-Ms呈近球形,平均粒径为59.4±2.4 nm(PDI=0.08±0.02)。七叶亭的包封率为87.3%±1.5%,载药量为5.5%±0.1%。进一步利用透射电子显微镜、粉末X射线衍射、傅里叶变换红外光谱技术和扫描电子显微镜对Sco-Ms进行了表征。大鼠口服给药后,与游离七叶亭相比,Sco-Ms在各肠段的吸收均显著改善,十二指肠和空肠是主要吸收部位。在给予Sco-Ms的大鼠(以游离七叶亭100 mg/kg的等效剂量,口服)中,Sco-Ms的AUC和C分别是给予游离七叶亭后所得值的4.38倍和8.43倍。大鼠口服给药后,Sco-Ms未改变七叶亭的组织分布,但显著提高了肝脏中七叶亭的水平。在氧嗪酸钾诱导的高尿酸血症小鼠中,口服Sco-Ms(以游离七叶亭300 mg/kg的等效剂量)可将血清尿酸浓度降至正常水平。结果表明,基于固体分散体的胶束系统可大大提高难溶性药物(如七叶亭)的生物利用度,是其口服给药的一种有前景的策略。