Han Emily L, Tang Sophia, Kim Dongyoon, Murray Amanda M, Swingle Kelsey L, Hamilton Alex G, Mrksich Kaitlin, Padilla Marshall S, Palanki Rohan, Li Jacqueline J, Mitchell Michael J
Department of Bioengineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.
Center for Fetal Research, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania 19104, United States.
Nano Lett. 2025 Jan 15;25(2):800-810. doi: 10.1021/acs.nanolett.4c05186. Epub 2024 Dec 17.
Systemic delivery of large nucleic acids, such as mRNA, to the brain remains challenging in part due to the blood-brain barrier (BBB) and the tendency of delivery vehicles to accumulate in the liver. Here, we design a peptide-functionalized lipid nanoparticle (LNP) platform for targeted mRNA delivery to the brain. We utilize click chemistry to functionalize LNPs with peptides that target receptors overexpressed on brain endothelial cells and neurons, namely the RVG29, T7, AP2, and mApoE peptides. We evaluate the effect of LNP targeting on brain endothelial and neuronal cell transfection , investigating factors such as serum protein adsorption, intracellular trafficking, endothelial transcytosis, and exosome secretion. Finally, we show that LNP peptide functionalization enhances mRNA transfection in the mouse brain and reduces hepatic delivery after systemic administration. Specifically, RVG29 LNPs improved neuronal transfection , establishing its potential as a nonviral platform for delivering mRNA to the brain.
将大的核酸(如mRNA)全身性递送至大脑仍然具有挑战性,部分原因是血脑屏障(BBB)以及递送载体在肝脏中积累的倾向。在此,我们设计了一种肽功能化脂质纳米颗粒(LNP)平台,用于将mRNA靶向递送至大脑。我们利用点击化学用靶向在脑内皮细胞和神经元上过表达的受体的肽对LNP进行功能化,即RVG29、T7、AP2和mApoE肽。我们评估LNP靶向对脑内皮和神经元细胞转染的影响,研究诸如血清蛋白吸附、细胞内运输、内皮转胞吞作用和外泌体分泌等因素。最后,我们表明LNP肽功能化增强了小鼠脑中的mRNA转染,并减少了全身给药后的肝脏递送。具体而言,RVG29 LNP改善了神经元转染,确立了其作为将mRNA递送至大脑的非病毒平台的潜力。