胰岛素
苯硼酸
化学
纳米颗粒
固体脂质纳米粒
生物分子
阳离子聚合
胰岛素释放
核酸
生物物理学
生物化学
糖尿病
纳米技术
有机化学
内分泌学
材料科学
1型糖尿病
生物
催化作用
作者
Yun Liu,Yanfang Wang,Yuejun Yao,Juan Zhang,Wei Liu,Kangfan Ji,Xinwei Wei,Yuanwu Wang,Xiangsheng Liu,Shiming Zhang,Jinqiang Wang,Zhen Gu
标识
DOI:10.1002/anie.202303097
摘要
Lipid nanoparticle-based drug delivery systems have a profound clinical impact on nucleic acid-based therapy and vaccination. Recombinant human insulin, a negatively-charged biomolecule like mRNA, may also be delivered by rationally-designed positively-charged lipid nanoparticles with glucose-sensing elements and be released in a glucose-responsive manner. Herein, we have designed phenylboronic acid-based quaternary amine-type cationic lipids that can self-assemble into spherical lipid nanoparticles in an aqueous solution. Upon mixing insulin and the lipid nanoparticles, a heterostructured insulin complex is formed immediately arising from the electrostatic attraction. In a hyperglycemia-relevant glucose solution, lipid nanoparticles become less positively charged over time, leading to reduced attraction and subsequent insulin release. Compared with native insulin, this lipid nanoparticle-based glucose-responsive insulin shows prolonged blood glucose regulation ability and blood glucose-triggered insulin release in a type 1 diabetic mouse model.
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