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一种咪唑修饰的脂质赋予 mRNA-LNP 在小鼠和非人灵长类动物中增强的 mRNA-LNP 稳定性和强大的免疫原性。

An imidazole modified lipid confers enhanced mRNA-LNP stability and strong immunization properties in mice and non-human primates.

机构信息

Sanofi R&D, Campus Mérieux, 1541 avenue Marcel Mérieux, 69280, Marcy l'Etoile, France; Laboratoire de Conception et Application de Molécules Bioactives, Equipe 3Bio (Biovectorisation, Bioconjugaison, Biomatériaux), UMR 7199 - CNRS/Université de Strasbourg, Faculté de Pharmacie, 74 route du Rhin, BP 60024, 67401, Illkirch Cedex, France.

Sanofi R&D, Campus Mérieux, 1541 avenue Marcel Mérieux, 69280, Marcy l'Etoile, France.

出版信息

Biomaterials. 2022 Jul;286:121570. doi: 10.1016/j.biomaterials.2022.121570. Epub 2022 May 7.

Abstract

The mRNA vaccine technology has promising applications to fight infectious diseases as demonstrated by the licensing of two mRNA-based vaccines, Comirnaty® (Pfizer/BioNtech) and Spikevax® (Moderna), in the context of the Covid-19 crisis. Safe and effective delivery systems are essential to the performance of these vaccines and lipid nanoparticles (LNPs) able to entrap, protect and deliver the mRNA in vivo are considered by many as the current "best in class". Nevertheless, current mRNA/LNP vaccine technology has still some limitations, one of them being thermostability, as evidenced by the ultracold distribution chain required for the licensed vaccines. We found that the thermostability of mRNA/LNP, could be improved by a novel imidazole modified lipid, DOG-IM4, in combination with standard helper lipids. DOG-IM4 comprises an ionizable head group consisting of imidazole, a dioleoyl lipid tail and a short flexible polyoxyethylene spacer between the head and tail. Here we describe the synthesis of DOG-IM4 and show that DOG-IM4 LNPs confer strong immunization properties to influenza HA mRNA in mice and macaques and a remarkable stability to the encapsulated mRNA when stored liquid in phosphate buffered saline at 4 °C. We speculate the increased stability to result from some specific attributes of the lipid's imidazole head group.

摘要

mRNA 疫苗技术在应对传染病方面具有广阔的应用前景,在新冠疫情期间,两款基于 mRNA 的疫苗 Comirnaty®(辉瑞/生物技术)和 Spikevax®(莫德纳)已获得许可。安全有效的递送系统是这些疫苗发挥作用的关键,许多人认为能够包裹、保护和体内递送 mRNA 的脂质纳米颗粒(LNPs)是目前的“同类最佳”。然而,目前的 mRNA/LNP 疫苗技术仍存在一些局限性,其中之一是热稳定性,这从已许可疫苗所需的超低温冷链中可以看出。我们发现,通过一种新型的咪唑修饰脂质 DOG-IM4 与标准辅助脂质结合,可以提高 mRNA/LNP 的热稳定性。DOG-IM4 由一个包含咪唑的可离子化头部、一个二油酰基脂质尾部和一个位于头部和尾部之间的短柔性聚氧乙烯间隔组成。本文描述了 DOG-IM4 的合成,并表明 DOG-IM4 LNPs 赋予了流感 HA mRNA 在小鼠和猕猴体内强大的免疫原性,并且当在 4°C 的磷酸盐缓冲盐水中储存液体时,封装的 mRNA 具有显著的稳定性。我们推测,脂质咪唑头部的某些特定属性导致了稳定性的提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f88/9078044/57abe5cf245e/ga1_lrg.jpg

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