生物利用度
纳米颗粒
利拉鲁肽
渗透(战争)
Zeta电位
生物物理学
分散性
肽
材料科学
药物输送
体外
活力测定
化学
药理学
纳米技术
生物化学
医学
高分子化学
运筹学
糖尿病
工程类
2型糖尿病
内分泌学
生物
作者
Philipp Uhl,Claudia Grundmann,Max Sauter,Philip Storck,Anja Tursch,Suat Özbek,Karin Leotta,Raphael Roth,Dominik Witzigmann,Jayesh A. Kulkarni,Veronika Fidelj,Christian Kleist,Pieter R. Cullis,Gert Fricker,Walter Mier
标识
DOI:10.1016/j.nano.2019.102132
摘要
Until today, the oral delivery of peptide drugs is hampered due to their instability in the gastrointestinal tract and low mucosal penetration. To overcome these hurdles, PLA (polylactide acid)-nanoparticles were coated with a cyclic, polyarginine-rich, cell penetrating peptide (cyclic R9-CPP). These surface-modified nanoparticles showed a size and polydispersity index comparable to standard PLA-nanoparticles. The zeta potential showed a significant increase indicating successful CPP-coupling to the surface of the nanoparticles. Cryo-EM micrographs confirmed the appropriate size and morphology of the modified nanoparticles. A high encapsulation efficiency of liraglutide could be achieved. In vitro tests using Caco-2 cells showed high viability indicating the tolerability of this novel formulation. A strongly enhanced mucosal binding and penetration was demonstrated by a Caco-2 binding and uptake assay. In Wistar rats, the novel nanoparticles showed a substantial, 4.5-fold increase in the oral bioavailability of liraglutide revealing great potential for the oral delivery of peptide drugs.
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