Long-circulating, transfection-competent lipid nanoparticle (LNP)-mRNA delivery systems are critical for achieving efficient transfection in extrahepatic tissues. Here we investigate the properties of LNP mRNA systems containing high proportions of bilayer forming lipids, using equimolar egg sphingomyelin and cholesterol as the bilayer-forming components. We show that LNP mRNA systems prepared at bilayer lipid to ionizable lipid molar ratios of 4-0.67 exhibit high mRNA encapsulation efficiencies (90-100%) and excellent transfection potencies in vitro. Systems with bilayer lipid to ionizable lipid molar ratios equating to 4 exhibit a liposomal morphology with a solid core suspended in an aqueous interior surrounded by a lipid bilayer. These liposomal LNPs exhibit longer circulation lifetimes than LNP systems with Onpattro-like lipid compositions and have enhanced extrahepatic transfection properties. The prolonged blood circulation lifetime is attributed to reduced plasma protein adsorption. The transfection competency of liposomal LNP systems is attributed to export of the solid core containing mRNA from the LNP as the endosomal pH is lowered.
Liposomal lipid nanoparticles for extrahepatic delivery of mRNA.
用于肝外递送mRNA的脂质体纳米颗粒
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作者:Cheng Miffy Hok Yan, Zhang Yao, Fox Kevin, Leung Jerry, Strong Colton, Kang Emma, Chen Yihang, Tong Michelle, Bommadevara Hemashree, Jan Eric, Ip Owen Yuk Long, RodrÃguez-RodrÃguez Cristina, Saatchi Katayoun, Häfeli Urs O, Abdolahzadeh Amir, Witzigmann Dominik, Cullis Pieter R
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 May 3; 16(1):4135 |
| doi: | 10.1038/s41467-025-58523-w | 研究方向: | 其它 |
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