Fang Yan, Xue Jianxiu, Ke Liyuan, Liu Yang, Shi Kai
a Department of Pharmaceutics , School of Pharmaceutical Science, Shenyang Pharmaceutical University , Shenyang , China.
Drug Deliv. 2016 Nov;23(9):3582-3593. doi: 10.1080/10717544.2016.1212440. Epub 2016 Aug 15.
A kind of polymeric lipid vesicles (PLVs) with pH-responsive turning on-off membrane for programed delivery of insulin in gastrointestinal (GI) tract was developed, which was self-assembled from the grafted amphipathic polymer of N-tocopheryl-N'-succinyl-ɛ-poly-l-lysine (TP/SC-g-PLL). By controlling the grafting ratio of hydrophobic alkane and ionizable carboxyl branches, the permeability of membrane was adjustable and thus allowing insulin release in a GI-pH dependent manner. The effects of grafting degree of substitution (DS) on the pH-responsive behavior of the formed vesicles were confirmed by critical aggregation concentration determination, morphology and size characterization. Their transepithelial permeability across the GI tract was proved by both confocal visualization in vitro model of Caco-2 cellular monolayer and in vivo hypoglycemic study in diabetic rats. Accordingly, the work described here indicated that the self-assembled PLVs could be a promising candidate for improving the GI delivery of hydrophilic biomacromolecule agents.
开发了一种具有pH响应开关膜的聚合物脂质囊泡(PLV),用于在胃肠道(GI)中程序性递送胰岛素,它由N-生育酚-N'-琥珀酰基-ε-聚-L-赖氨酸(TP/SC-g-PLL)的接枝两亲聚合物自组装而成。通过控制疏水性烷烃和可电离羧基支链的接枝率,膜的渗透性是可调节的,从而使胰岛素以依赖于胃肠道pH值的方式释放。通过临界聚集浓度测定、形态和尺寸表征,证实了取代度(DS)的接枝程度对形成的囊泡的pH响应行为的影响。通过Caco-2细胞单层的共聚焦可视化体外模型和糖尿病大鼠的体内降血糖研究,证明了它们在胃肠道中的跨上皮渗透性。因此,这里描述的工作表明,自组装的PLV可能是改善亲水性生物大分子药物胃肠道递送的有前途的候选者。