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mRNA Vaccines Encoding the HA Protein of Influenza A H1N1 Virus Delivered by Cationic Lipid Nanoparticles Induce Protective Immune Responses in Mice

机译:通过阳离子脂质纳米粒子递送的流感HA蛋白的mRNA疫苗诱导小鼠的保护性免疫应答

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摘要

The design of the mRNA vaccine involves the selection of in vitro transcription (IVT) systems and nonviral delivery vectors. This study aimed to verify the effect of 5’ and 3’ untranslated region (UTR) sequences on the translation efficiency of mRNA. Three modes of IVT-mRNA systems (IVT-mRNA-n1/n2/n3) with diverse UTRs were constructed, and EGFP (enhanced green fluorescent protein) and HA (hemagglutinin) gene of H3N2 influenza virus were introduced into each of them. The results showed that the mode of 5’ and 3’ UTRs originating from human β-globulin was better than the mode of UTRs from human α-globulin, and the n3 mode was the best. mEGFP-n3, mH3HA-n3, and mLuciferease-n3 were prepared to compare the effect of cationic lipid nanoparticle (LNP) with that of mannose-conjugated LNP (LNP-Man) on the efficiency of gene delivery. The results showed that the effect of LNP-Man was better than that of LNP both in vitro and in vivo. Choosing appropriate ligands might help in vaccine design. After selecting the IVT-mRNA-n3 system and delivery vectors, mRNA vaccines were constructed against the H1N1 influenza virus, and C57BL/6 mice were immunized through intranasal administration. The results showed that mRNA vaccines could elicit both humoral and cellular immune responses and completely protect mice from the tenfold LD50 H1N1 influenza virus challenge.
机译:mRNA疫苗的设计涉及选择体外转录(IVT)系统和非血管递送载体。本研究旨在验证5'和3'未转换区域(UTR)序列对mRNA的翻译效率的影响。构建了具有不同UTR的IVT-mRNA系统(IVT-mRNA-N1 / N2 / N3)的三种模式,并将H3N2流感病毒的EGFP(增强的绿色荧光蛋白)和HA(血凝素)基因引入其中。结果表明,源自人β-球蛋白的5'和3'UTR的模式优于人α-球蛋白的UTR的模式,N3模式是最好的。制备MEGFP-N3,MH3HA-N3和MH3HA-N3和MH3HA-N3和MH3HA-N3和阳离子脂纳米粒子(LNP)与甘露糖缀合的LNP(LNP-MAN)的作用对基因递送效率的影响。结果表明,LNP-MAN的效果优于体外和体内LNP的影响。选择合适的配体可能有助于疫苗设计。选择IVT-mRNA-N3系统和递送载体后,将MRNA疫苗与H1N1流感病毒构成,通过鼻内给药免疫C57BL / 6小鼠。结果表明,mRNA疫苗可以引发体液和细胞免疫应答,并完全保护小鼠来自十倍LD50 H1N1流感病毒攻击。

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