核酸
化学
内体
毒性
纳米颗粒
生物物理学
生物化学
胺气处理
细胞毒性
组合化学
静电相互作用
羧酸
纳米技术
作者
Dengpan Liang,Yalin Qi,Hesong Han,Negar Ahmadian,Kewa Gao,Kaycee Sapasap,Yuxi Zhang,Silin Guo,Atip Lawanprasert,Sopida Pimcharoen,Sheng Zhao,Milan T. Del Buono,He Xia,Zoe O. Enders,Benjamin W. Burgstone,Antonino Caliò,Neel Dankar,Bingwei Lu,Lei S. Qi,Aijun Wang
标识
DOI:10.1038/s41565-026-02262-6
摘要
Lipid nanoparticles (LNPs) have great potential as nucleic acid delivery vehicles; however, they trigger the production of inflammatory cytokines, which limits their medical applications. Developing non-inflammatory LNPs is challenging because the LNP's ionizable lipid and the process of endosomal disruption are the major sources of LNP toxicity but are also essential for delivering nucleic acids. Here we demonstrate that ionizable lipids containing a carboxylic acid and an amine (termed S-lipid) switch their charged state between the pHs of 7.4 and 4.0, allowing them to generate LNPs (termed switchable nanoparticles) that efficiently encapsulate nucleic acid and trigger endosomal release without activation of the TLR4, complement, galectin-8 and platelet activating factor signalling pathways. Finally, we demonstrate that switchable nanoparticles are better at treating lipopolysaccharide-induced acute lung injury than traditional LNPs because they do not exacerbate pre-existing inflammation. Collectively, these results demonstrate that negatively charged ionizable lipids can mitigate the toxicity of LNPs.
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