小RNA
海绵
渗透(战争)
DNA
核糖核酸
纳米技术
材料科学
细胞生物学
计算生物学
气溶胶化
生物物理学
基因
生物
生物化学
吸入
解剖
工程类
植物
运筹学
作者
Lan Yao,Geru Zhang,Li Wang,Zhiqiang Liu,Jiale Liang,Jiafei Sun,Songhang Li,Taoran Tian,Yunfeng Lin
标识
DOI:10.1002/adma.202414336
摘要
Abstract In designing aerosolized drugs, the challenge lies in achieving optimal penetration and retention. Existing delivery systems prioritize larger particles for prolonged intrapulmonary retention, compromising penetration speed. Conversely, smaller nanoparticles face rapid clearance and limited retention. RNA sponges featuring multiple microRNA binding sites exhibit promising potential for gene expression regulation. However, the complex structure of the frequently utilized cyclic RNA sponge impedes rapid penetration and cellular uptake, restricting its application. This study proposes an innovative approach using a compact tetrahedral framework of nucleic acid to construct an inhalable microRNA sponge. Distinguished by its simplified structure, this microRNA sponge ensures effective microRNA inhibition, rapid tissue penetration, and prolonged residency through prompt endocytosis. Validated in acute lung inflammation models, the approach demonstrates swift restoration of local immune homeostasis. This design addresses the critical need for aerosol vehicles that balance efficient penetration and sustained retention, offering a promising solution for effective gene expression regulation.
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