Gazi University, Faculty of Pharmacy, Department of Pharmaceutical Technology, 06330 Etiler, Ankara, Turkey.
Gazi University, Faculty of Pharmacy, Department of Pharmaceutical Technology, 06330 Etiler, Ankara, Turkey.
Int J Pharm. 2018 Sep 5;548(1):255-262. doi: 10.1016/j.ijpharm.2018.06.063. Epub 2018 Jun 30.
Lipid polymer hybrid nanoparticles (LPHNs) combine the characteristics and beneficial properties of both polymeric nanoparticles and liposomes. The objective of this study was to design and optimize gemcitabine hydrochloride loaded LPHNs based on the central composite design approach. PLGA 50:50/PLGA 65:35 mass ratio (w/w), soya phosphatidylcholine (SPC)/polymer mass ratio (%, w/w) and amount of DSPE-PEG were chosen as the investigated independent variables. The LPHNs were prepared with modified double emulsion solvent evaporation method and characterized by testing their particle size, encapsulation efficiency, and cumulative release. The composition of optimal formulation was determined as 1,5 (w/w) PLGA 50:50/PLGA 65:35 mass ratio, 30% (w/w) SPC/polymer mass ratio and 15 mg DSPE-PEG. The results showed that the optimal formulation gemcitabine hydrochloride loaded LPHNs had encapsulation efficiency of 45,2%, particle size of 237 nm and cumulative release of 62,3% at the end of 24 h. The morphology of LPHNs was found to be spherical by transmission electron microscopy (TEM) observation. Stability studies showed that LPHNs were physically stable until 12 months at 4 °C and 9 months at 25 °C/60% RH. The results suggest that the LPHNs can be an effective drug delivery system for hydrophilic active pharmaceutical ingredient.
脂质聚合物杂化纳米粒(LPHN)结合了聚合物纳米粒和脂质体的特性和有益特性。本研究旨在基于中心复合设计方法设计和优化盐酸吉西他滨负载的 LPHN。PLGA 50:50/PLGA 65:35 质量比(w/w)、大豆卵磷脂(SPC)/聚合物质量比(%,w/w)和 DSPE-PEG 的量被选为研究的独立变量。采用改良的双乳液溶剂蒸发法制备 LPHN,并通过测试其粒径、包封效率和累积释放来进行表征。最佳配方的组成确定为 1.5(w/w)PLGA 50:50/PLGA 65:35 质量比、30%(w/w)SPC/聚合物质量比和 15mg DSPE-PEG。结果表明,最佳配方盐酸吉西他滨负载的 LPHN 的包封效率为 45.2%,粒径为 237nm,24h 时累积释放率为 62.3%。透射电子显微镜(TEM)观察发现,LPHN 的形态为球形。稳定性研究表明,LPHN 在 4°C 下直到 12 个月,在 25°C/60%RH 下直到 9 个月时均保持物理稳定性。结果表明,LPHN 可以成为亲水性活性药物成分的有效药物递送系统。