Liu Mengqi, Zhang Shiming, Cui Shuxia, Chen Fen, Jia Lianqun, Wang Shu, Gai Xiumei, Li Pingfei, Yang Feifei, Pan Weisan, Yang Xinggang
a Department of Traditional Chinese Medicine , Shenyang Pharmaceutical University , Shenyang , China.
b Department of Pharmacy , Shenyang Pharmaceutical University , Shenyang , China.
Drug Deliv. 2017 Nov;24(1):1598-1604. doi: 10.1080/10717544.2017.1388453.
The main objective of this study was to develop a pH gradient release pellet with self-emulsifying drug delivery system (SEDDS), which could not only improve the oral bioavailability of Vinpocetine (VIN), a poor soluble drug, but reduce the fluctuation of plasma concentration. First, the liquid VIN SEDDS formulation was prepared. Then the self-emulsifying pH gradient release pellets were prepared by extrusion spheronization technique, and formulation consisted by the liquid SEDDS, absorbent (colloidal silicon dioxide), penetration enhancer (sodium chloride), microcrystalline cellulose, ethyl alcohol, and three coating materials (HPMC, Eudragit L30D55, Eudragit FS30D) were eventually selected. Three kinds of coated pellets were mixed in capsules with the mass ratio of 1:1:1. The release curves of capsules were investigated in vitro under the simulated gastrointestinal conditions. In addition, the oral bioavailability and pharmacokinetics of VIN self-emulsifying pH gradient release pellets, commercial tablets and liquid VIN SEDDS were evaluated in Beagle dogs. The oral bioavailability of self-emulsifying pH gradient release pellets was about 149.8% of commercial VIN tablets, and it was about 86% of liquid VIN SEDDS, but there were no significant difference between liquid SEDDS and self-emulsifying pH gradient release pellets. In conclusion, the self-emulsifying pH gradient release pellets could significantly enhance the absorption of VIN and effectively achieve a pH gradient release. And the self-emulsifying pH gradient release pellet was a promising method to improve bioavailability of insoluble drugs.
本研究的主要目的是开发一种具有自乳化给药系统(SEDDS)的pH梯度释放微丸,其不仅可以提高难溶性药物长春西汀(VIN)的口服生物利用度,还能降低血浆浓度的波动。首先,制备液体VIN SEDDS制剂。然后通过挤出滚圆技术制备自乳化pH梯度释放微丸,最终选定的制剂由液体SEDDS、吸收剂(胶体二氧化硅)、渗透促进剂(氯化钠)、微晶纤维素、乙醇以及三种包衣材料(羟丙甲纤维素、丙烯酸树脂L30D55、丙烯酸树脂FS30D)组成。将三种包衣微丸按质量比1:1:1混合装入胶囊。在模拟胃肠道条件下体外考察胶囊的释放曲线。此外,在比格犬体内评价了VIN自乳化pH梯度释放微丸、市售片剂和液体VIN SEDDS的口服生物利用度和药代动力学。自乳化pH梯度释放微丸的口服生物利用度约为市售VIN片剂的149.8%,约为液体VIN SEDDS的86%,但液体SEDDS与自乳化pH梯度释放微丸之间无显著差异。总之,自乳化pH梯度释放微丸可显著提高VIN的吸收并有效实现pH梯度释放。自乳化pH梯度释放微丸是提高难溶性药物生物利用度的一种有前景的方法。