Department of Pharmacy, Zengcheng District People's Hospital of Guangzhou, Guangzhou 511300, Guangdong, China.
Department of Pharmacy, Sun Yat-Sen Memorial Hospital, Sun Yat-Sen University, Guangzhou 510120, Guangdong, China.
Biomed Res Int. 2018 Sep 27;2018:6763057. doi: 10.1155/2018/6763057. eCollection 2018.
The main purpose of this study was to investigate the potential of self-nanoemulsified drug delivery system (SNEDDS) to improve the oral bioavailability of tetrandrine (Tet). SNEDDS was developed by using rational blends of excipients with good solubilizing ability for Tet which was selected based on solubility studies. Further ternary phase diagram was constructed to determine the self-emulsifying region. The optimal formulation with the best self-nanoemulsified and solubilization ability consisted of 40% (w/w) oleic acid as oil, 15% (w/w) SPC and 30% (w/w) Cremophor RH-40 as surfactant, and 15% (w/w) PEG as cosurfactant. The average droplet size and zeta-potential of the optimal Tet SNEDDS were 19.75±0.37 nm and 1.87±0.26 mv, respectively. The dissolute rate of Tet SNEDDS in various dissolution media was remarkably faster than Tet commercial tablet. Moreover, in vivo pharmacokinetic study results show that significant increase (p≤ 0.05) in the peak concentration (Cmax) and the area under the curve (AUC) of Tet was observed after the oral administration of Tet SNEDDS and the absorption of Tet from SNEDDS resulted in approximately 2.33-fold increase in oral bioavailability compared with the commercial tablet. Our research suggests that the prepared Tet SNEDDS could be a good candidate for improved the dissolution and oral bioavailability of Tet.
本研究的主要目的是研究自微乳药物传递系统(SNEDDS)提高粉防己碱(Tet)口服生物利用度的潜力。通过使用具有良好溶解能力的辅料与 Tet 进行合理混合,开发了 SNEDDS,Tet 的选择是基于溶解度研究。进一步构建三元相图以确定自乳化区域。具有最佳自乳化和溶解能力的最佳配方由 40%(w/w)油酸作为油相、15%(w/w)SPC 和 30%(w/w)Cremophor RH-40 作为表面活性剂和 15%(w/w)PEG 作为助表面活性剂组成。最佳 Tet SNEDDS 的平均粒径和 zeta 电位分别为 19.75±0.37nm 和 1.87±0.26mV。Tet SNEDDS 在各种溶解介质中的溶解速率明显快于 Tet 商业片剂。此外,体内药代动力学研究结果表明,Tet SNEDDS 口服后 Tet 的峰浓度(Cmax)和曲线下面积(AUC)显著增加(p≤0.05),与商业片剂相比,Tet 从 SNEDDS 吸收导致口服生物利用度增加约 2.33 倍。我们的研究表明,所制备的 Tet SNEDDS 可能是提高 Tet 溶解和口服生物利用度的良好候选物。