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mRNA-脂质纳米颗粒(LNP)的结构特征及其增强mRNA疫苗免疫原性的机制研究

Characterization of mRNA-LNP structural features and mechanisms for enhanced mRNA vaccine immunogenicity.

作者信息

Wu Kangzeng, Xu Fengwei, Dai Yongchao, Jin Shanshan, Zheng Anjie, Zhang Ning, Xu Yuhong

机构信息

College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, PR China; Zhejiang-California International Nanosystems Institute, Zhejiang University, Hangzhou 310058, PR China.

HighField Biopharmaceuticals Inc., Hangzhou 310000, PR China.

出版信息

J Control Release. 2024 Dec;376:1288-1299. doi: 10.1016/j.jconrel.2024.11.007. Epub 2024 Nov 13.

Abstract

Lipid nanoparticles (LNPs) used for nonviral gene delivery have achieved significant success, particularly in COVID-19 mRNA vaccines. LNPs are routinely characterized by their particle size, polydispersity, and mRNA loading efficiency. However, the internal structure of these particles has not been specified, despite evidence showing that LNPs can be highly heterogeneous, with variations in lipid composition and preparation methods. How these structural features contributed to mRNA LNP vaccine activities is also unclear. In this study, we prepared LNPs with distinctly different internal structures. They were named the emulsion-like LNPs (eLNPs) and membrane-rich LNPs (mLNPs) respectively and compared with the classic "bleb" structure LNPs (cLNPs). The eLNPs contained higher molar percent of the ionizable lipid and lower molar percent of DSPC and cholesterol. The different lipid organization structures lead to varying mRNA delivery activities in vitro and in vivo. After intramuscular injection, eLNPs remained at the injection site and expressed antigens locally. The resulted immune responses had a very fast onset (higher titer at week 2) and lasted longer and stronger (higher titers at week 8) than other LNPs (cLNPs and mLNPs). We hypothesize that the rapid onset and local expression of antigens by muscle cells in the eLNP groups may be favored by the antigen recognition and presentation process, despite the overall mRNA expression activities was not as high especially in liver and other organ. Our data support that eLNPs are potentially the more suitable delivery system for mRNA vaccine due to their high immunogenicity and low systemic toxicity.

摘要

用于非病毒基因递送的脂质纳米颗粒(LNPs)已取得显著成功,尤其是在新冠病毒mRNA疫苗方面。LNPs通常通过其粒径、多分散性和mRNA负载效率来表征。然而,尽管有证据表明LNPs可能高度异质,脂质组成和制备方法存在差异,但这些颗粒的内部结构尚未明确。这些结构特征如何影响mRNA-LNP疫苗的活性也不清楚。在本研究中,我们制备了具有明显不同内部结构的LNPs。它们分别被命名为乳液样LNPs(eLNPs)和富含膜的LNPs(mLNPs),并与经典的“泡状”结构LNPs(cLNPs)进行比较。eLNPs含有较高摩尔百分比的可电离脂质和较低摩尔百分比的二硬脂酰磷脂酰胆碱(DSPC)和胆固醇。不同的脂质组织结构导致体外和体内不同的mRNA递送活性。肌肉注射后,eLNPs留在注射部位并在局部表达抗原。与其他LNPs(cLNPs和mLNPs)相比,产生的免疫反应起效非常快(第2周时滴度更高),持续时间更长且更强(第8周时滴度更高)。我们推测,尽管总体mRNA表达活性不高,尤其是在肝脏和其他器官中,但eLNP组中肌肉细胞对抗原的快速识别和呈递过程可能有利于抗原的快速起效和局部表达。我们的数据支持,由于eLNPs具有高免疫原性和低全身毒性,它们可能是更适合mRNA疫苗的递送系统。

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