体内
纳米技术
表面改性
信使核糖核酸
化学
细胞生物学
抗体
材料科学
计算生物学
生物
生物化学
免疫学
基因
生物技术
物理化学
作者
Moore Chen,Daniel Yuen,Victoria M. McLeod,Ken W. Yong,Cameron H. Smyth,Bruna Rossi Herling,Thomas J. Payne,Stewart A. Fabb,Matthew J. Belousoff,Azizah Algarni,Patrick M. Sexton,Christopher J. H. Porter,Colin W. Pouton,Angus P. R. Johnston
标识
DOI:10.1038/s41565-025-01954-9
摘要
Abstract Efficient and precise delivery of mRNA is critical to advance mRNA therapies beyond their current use as vaccines. Lipid nanoparticles (LNPs) efficiently encapsulate and protect mRNA, but non-specific cellular uptake may lead to off-target delivery and minimal delivery to target cells. Functionalizing LNPs with antibodies enables targeted mRNA delivery, but traditional modification techniques require complex conjugation and purification, which often reduces antibody affinity. Here we present a simple method for capturing antibodies in their optimal orientation on LNPs, without antibody modification or complex purification. This strategy uses an optimally oriented anti-Fc nanobody on the LNP surface to capture antibodies, resulting in protein expression levels more than 1,000 times higher than non-targeted LNPs and more than 8 times higher than conventional antibody functionalization techniques. These precisely targeted LNPs showed highly efficient in vivo targeting to T cells, with minimal delivery to other immune cells. This approach enables the rapid development of targeted LNPs and has the potential to broaden the use of mRNA therapies.
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