School of pharmacy, Binzhou Medical University, Yantai, 264003, China.
School of Pharmacy, Yantai University, Yantai, 264005, China.
Sci Rep. 2018 Jan 15;8(1):726. doi: 10.1038/s41598-018-19170-y.
To improve the oral efficiency of exenatide, we prepared polyethylene glycol-poly(lactic-co-glycolic acid) (PEG-PLGA) NPs modified with Fc (NPs-Fc) for exenatide oral delivery. Exenatide was encapsulated into the NPs by the w/o/w emulsion-solvent evaporation method. The particle size of the NPs-Fc was approximately 30 nm larger than that of the unmodified NPs with polydispersity indices in a narrow range (PDIs; PDI < 0.3) as detected by DLS, and the highest encapsulation efficiency of exenatide in the NPs was greater than 80%. Fc-conjugated NPs permeated Caco-2 cells faster and to a greater extent compared to unmodified NPs, as verified by CLSM and flow cytometry. Hypoglycemic effect studies demonstrated that oral administration of exenatide-loaded PEG-PLGA NPs modified by an Fc group extended the hypoglycemic effects compared with s.c. injection of the exenatide solution. Fluorescence-labeled NPs were used to investigate the effects of Fc targeting, and the results demonstrated that the NPs-Fc stayed in the gastrointestinal tract for a longer time in comparison with the unmodified NPs, as shown by the whole-body fluorescence images and fluorescence images of the dissected organs detected by in vivo imaging in live mice. Therefore, Fc-targeted nano-delivery systems show great promise for oral peptide/protein drug delivery.
为了提高艾塞那肽的口服效率,我们制备了聚乙二醇-聚(乳酸-共-乙醇酸)(PEG-PLGA)纳米粒修饰的 Fc(NPs-Fc),用于艾塞那肽的口服递送。艾塞那肽通过 w/o/w 乳液溶剂蒸发法包封到纳米粒中。通过 DLS 检测,NPs-Fc 的粒径比未修饰的 NPs 大约大 30nm,多分散指数(PDI;PDI<0.3)窄,NPs 中艾塞那肽的最高包封效率大于 80%。与未修饰的 NPs 相比,Fc 修饰的 NPs 通过 CLSM 和流式细胞术更快、更多地渗透 Caco-2 细胞。降血糖作用研究表明,与皮下注射艾塞那肽溶液相比,口服载有 Fc 基团的艾塞那肽 PEG-PLGA 纳米粒可延长降血糖作用。荧光标记的 NPs 用于研究 Fc 靶向的效果,结果表明,与未修饰的 NPs 相比,NPs-Fc 在胃肠道中的停留时间更长,这可以通过活体小鼠的全身荧光图像和体内成像检测到的解剖器官的荧光图像来证明。因此,Fc 靶向纳米递药系统有望用于口服肽/蛋白药物递送。