School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, PR China.
Int J Pharm. 2012 Apr 4;425(1-2):1-8. doi: 10.1016/j.ijpharm.2011.12.055. Epub 2012 Jan 12.
In this work, we designed and developed a two-stage delivery system composed of enteric capsule and cationic nanoparticles for oral delivery of insulin. The enteric capsule was coated with pH-sensitive hydroxypropyl methylcellulose phthalate (HP55), which could selectively release insulin from nanoparticles in the intestinal tract, instead of stomach. The biodegradable poly(lactic-co-glycolic acid) (PLGA) was selected as the matrix for loading insulin. Eurdragit(®) RS (RS) was also introduced to the nanoparticles for enhancing the penetration of insulin across the mucosal surface in the intestine. The nanoparticles were prepared with the multiple emulsions solvent evaporation method via ultrasonic emulsification. The optimized nanoparticles have a mean size of 285nm, a positive zeta potential of 42mV. The encapsulation efficiency was up to 73.9%. In vitro results revealed that the initial burst release of insulin from nanoparticles was markedly reduced at pH 1.2, which mimics the stomach environment. In vivo effects of the capsule containing insulin PLGA/RS nanoparticles were also investigated in diabetic rat models. The oral delivered capsules induced a prolonged reduction in blood glucose levels. The pharmacological availability was found to be approximately 9.2%. All the results indicated that the integration of HP55-coated capsule with cationic nanoparticles may be a promising platform for oral delivery of insulin with high bioavailability.
在这项工作中,我们设计并开发了一种由肠溶胶囊和阳离子纳米粒组成的两阶段递药系统,用于胰岛素的口服递送。肠溶胶囊用 pH 敏感的羟丙甲纤维素邻苯二甲酸酯(HP55)包衣,使其能够在肠道而不是胃中从纳米粒中选择性地释放胰岛素。可生物降解的聚(乳酸-共-乙醇酸)(PLGA)被选为负载胰岛素的基质。还将 Eurdragit(®) RS(RS)引入纳米粒中,以增强胰岛素在肠道黏膜表面的穿透性。纳米粒采用多重乳液溶剂蒸发法通过超声乳化制备。优化后的纳米粒平均粒径为 285nm,zeta 电位为正 42mV。包封效率高达 73.9%。体外结果表明,在 pH 1.2 下,纳米粒中胰岛素的初始突释明显减少,模拟了胃环境。还在糖尿病大鼠模型中研究了含有胰岛素 PLGA/RS 纳米粒的胶囊的体内作用。口服递送的胶囊可长时间降低血糖水平。药代动力学可用性约为 9.2%。所有结果表明,HP55 包衣胶囊与阳离子纳米粒的结合可能是一种具有高生物利用度的胰岛素口服递药的有前途的平台。