Targeting DNA‐LNPs to Endothelial Cells Improves Expression Magnitude, Duration, and Specificity

转基因 细胞生物学 抗体 基因表达 化学 癌症研究 分子生物学 信使核糖核酸 特异性抗体 转基因小鼠 生物 内皮 表达式(计算机科学) DNA 内皮干细胞 细胞 表型 基因 蛋白质表达 遗传增强 基因表达调控 机制(生物学) 细胞培养 基因传递 过度表达
作者
Nicolas Marzolini,Taylor V. Brysgel,Ryan J. Rahman,Eno‐Obong I. Essien,Saw Y. Nwe,Jian Wu,Aparajeeta Majumder,Manthan Patel,Sachchidanand Tiwari,Carolann L. Espy,Fengyi Dong,Sabrina A. Santos‐De León,Anit Shah,Vladimir V. Shuvaev,Elizabeth D. Hood,Liam S. Chase,Drew Weissman,Jeremy Katzen,David B Frank,Mariko L. Bennett
出处
期刊:Advanced Science [Wiley]
卷期号:13 (14): e15480-e15480 被引量:1
标识
DOI:10.1002/advs.202515480
摘要

DNA-lipid nanoparticles (DNA-LNPs) loaded with inhibitors of the cGAS-STING pathway enable safe and effective delivery of DNA in vivo. Herein, we report the first instances of extrahepatic DNA-LNP targeting. DNA-LNPs conjugated to antibodies against PECAM-1 or VCAM-1 target the endothelium of the lungs and brain/spleen, respectively. These LNPs drive robust transgene expression in their target organs, with greater magnitude and duration than untargeted LNPs. Lung specificity of PECAM-targeted transgene expression increases over two weeks, resulting in markedly higher lung-to-liver expression ratios than our previous PECAM-targeted mRNA-LNPs. Off-target liver DNA expression declines to undetectable levels but persists in the lungs, while mRNA expression uniformly decreases due to its short half-life. We further improve this expression specificity by replacing full-length antibodies with Fab fragments. Single-cell analysis reveals a key mechanism underlying the improvements in organ-specificity: target organ expression is dominated by long-lived endothelial cells, while off-target liver delivery and expression are in non-endothelial cells with shorter half-lives. Collectively, these studies demonstrate that targeted DNA-LNPs achieve high levels of organ- and cell-type-specific transgene expression and thus provide a therapeutic platform for dozens of endothelial-centric diseases.
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