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并对具有吸收增强剂的纳米颗粒和磷脂混合纳米颗粒进行评估,用于口服胰岛素传递。

and evaluations on nanoparticle and phospholipid hybrid nanoparticles with absorption enhancers for oral insulin delivery.

机构信息

Faculty of Pharmacy, Department of Pharmaceutical Technology, Gazi University, Ankara, Turkey.

Faculty of Pharmacy, Department of Pharmacology, Gazi University, Ankara, Turkey.

出版信息

Pharm Dev Technol. 2021 Feb;26(2):157-166. doi: 10.1080/10837450.2020.1849282. Epub 2020 Nov 23.

Abstract

Oral delivery of peptide and proteins is challenging due to their poor physical and chemical stability which usually results in inadequate therapeutic efficacy. Nanoparticles encapsulating insulin was developed by the ionic gelation technique using sulfobutyl ether-β-cyclodextrin as an anionic linker. Phospholipid hybrid nanoparticles were formulated by utilizing ionic gelation and thin-film hydration methods using D-α-Tocopheryl polyethylene glycol 1000 succinate, sodium deoxycholate separately and in combination to take the advantage of liposomes and nanoparticles also various absorption enhancement mechanisms. All formulations were characterized and tested for gastrointestinal stability, drug release, and cytotoxicity. On the other hand, effects of developed formulations on reducing blood glucose levels were monitored for 8 hours. Phospholipid hybrid nanoparticles including D-α-Tocopheryl polyethylene glycol 1000 succinate and sodium deoxycholate in combination with 548.7 nm particle size, 0.332 polydispersity index, 22.0 mV zeta potential, and 61.9% encapsulation efficiency, exhibited desired gastrointestinal stability and insulin release . In addition, the formulation proved its safety with cytotoxicity studies on L929 cells. The subjected phospholipid hybrid nanoparticle formulation was found to be the most effective formulation by reducing and maintaining blood glucose levels with avoiding fluctuations.

摘要

由于肽和蛋白质的物理和化学稳定性差,口服递送具有挑战性,这通常导致治疗效果不足。采用离子凝胶技术,使用磺丁基醚-β-环糊精作为阴离子连接体,开发了包封胰岛素的纳米粒子。通过利用离子凝胶和薄膜水化方法,使用 D-α-生育酚聚乙二醇 1000 琥珀酸酯、脱氧胆酸钠分别和组合,来利用脂质体和纳米粒子,以及各种吸收增强机制,制备了磷脂混合纳米粒子。对所有制剂进行了表征,并测试了胃肠道稳定性、药物释放和细胞毒性。另一方面,监测了开发制剂对降低血糖水平的影响达 8 小时。包括 D-α-生育酚聚乙二醇 1000 琥珀酸酯和脱氧胆酸钠在内的磷脂混合纳米粒子,与 548.7nm 的粒径、0.332 的多分散指数、22.0mV 的 zeta 电位和 61.9%的包封效率相结合,表现出良好的胃肠道稳定性和胰岛素释放。此外,该制剂在 L929 细胞的细胞毒性研究中被证明是安全的。通过降低和维持血糖水平并避免波动,所研究的磷脂混合纳米粒子制剂被发现是最有效的制剂。

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