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通过优化脂质胺基头基团来增强可离子化脂质纳米颗粒介导的 mRNA 递呈。

Boosting ionizable lipid nanoparticle-mediated mRNA delivery through optimization of lipid amine-head groups.

机构信息

Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education, and School of Chemistry and Chemical Engineering, Shandong University, Jinan 25010, China.

出版信息

Biomater Sci. 2021 Nov 9;9(22):7534-7546. doi: 10.1039/d1bm00866h.

Abstract

transcribed messenger RNA (IVT-mRNA) holds great promise for the development of novel therapeutics, such as immunotherapy and vaccination. However, the main obstacle towards clinical translation is the lack of effective delivery systems. Herein, we have synthesized a series of ionizable lipids by the addition of an alkyl-acrylate to amine-containing molecules (amine-head groups) as a key component of ionizable lipid nanoparticles (iLNPs) and thoroughly investigated the impact of the amine-head group on the transfection efficiency of iLNPs/mRNA lipoplexes both and . The top-performing iLNP (114-iLNP), composed of a lipid with spermine as the amine-head, demonstrated the strongest cellular uptake, membrane disruption and endosomal escape, and further achieved the highest protein expression in HeLa cells with more than 95% transfection efficiency. More importantly, intravenous injection of luciferase mRNA loaded 114-iLNP enables the most efficacious protein expression, predominantly in the liver. Biodistribution and biosafety evaluation of 114-iLNP/mRNA further demonstrated the liver-selective delivery capability and high biocompatibility. In addition, 114-iLNP facilitated efficient delivery of a therapeutic gene, human erythropoietin (hEPO) mRNA, and induced hEPO expression in a dose-dependent manner. Therefore, these results demonstrate that the amine-head group in the ionizable lipid significantly affects mRNA delivery efficacy and the leading candidate 114-iLNP composed of a lipid with spermine as the amine-head has great potential for mRNA therapeutics development.

摘要

经转录的信使 RNA(IVT-mRNA)在免疫疗法和疫苗等新型疗法的开发方面具有巨大的潜力。然而,向临床转化的主要障碍是缺乏有效的传递系统。在此,我们通过在含胺分子(胺头基团)上添加烷基丙烯酰胺来合成了一系列可离子化脂质,作为可离子化脂质纳米颗粒(iLNPs)的关键组成部分,并深入研究了胺头基团对 iLNPs/mRNA 脂复合物转染效率的影响。表现最好的 iLNP(114-iLNP)由具有 spermine 作为胺头的脂质组成,表现出最强的细胞摄取、膜破坏和内涵体逃逸能力,并且在 HeLa 细胞中进一步实现了超过 95%的转染效率的最高蛋白表达。更重要的是,静脉注射负载荧光素酶 mRNA 的 114-iLNP 可实现最有效的蛋白表达,主要在肝脏中。114-iLNP/mRNA 的分布和生物安全性评估进一步证明了其肝脏选择性递药能力和高生物相容性。此外,114-iLNP 促进了治疗基因人促红细胞生成素(hEPO)mRNA 的高效传递,并以剂量依赖的方式诱导 hEPO 的表达。因此,这些结果表明,可离子化脂质中的胺头基团显著影响 mRNA 的传递效率,候选物 114-iLNP 由具有 spermine 作为胺头的脂质组成,在 mRNA 治疗药物的开发方面具有巨大的潜力。

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