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一种简化的 SARS-CoV-2 小鼠模型证明了基于口服复制子的 mRNA 疫苗的保护作用。

A Simplified SARS-CoV-2 Mouse Model Demonstrates Protection by an Oral Replicon-Based mRNA Vaccine.

机构信息

Department of Veterinary Public Health, College of Veterinary Medicine, Jeonbuk National University, Iksan, South Korea.

Department of Veterinary Pathology, College of Veterinary Medicine, Jeonbuk National University, Iksan, South Korea.

出版信息

Front Immunol. 2022 Feb 16;13:811802. doi: 10.3389/fimmu.2022.811802. eCollection 2022.

Abstract

A mouse model of SARS-CoV-2 that can be developed in any molecular biology lab with standard facilities will be valuable in evaluating drugs and vaccines. Here we present a simplified SARS-CoV-2 mouse model exploiting the rapid adenoviral purification method. Mice that are sensitive to SARS-CoV-2 infection were generated by transducing human angiotensin-converting enzyme 2 (hACE2) by an adenovirus. The expression kinetics of the hACE2 in transduced mice were assessed by immunohistochemistry, RT-PCR, and qPCR. Further, the ability of the hACE2 to support viral replication was determined and . The hACE2 expression in the lungs of mice was observed for at least nine days after transduction. The murine macrophages expressing hACE2 supported viral replication with detection of high viral titers. Next, studies were carried out to determine viral replication and lung disease following SARS-CoV-2 challenge. The model supported viral replication, and the challenged mouse developed lung disease characteristic of moderate interstitial pneumonia. Further, we illustrated the utility of the system by demonstrating protection using an oral mRNA vaccine. The multicistronic vaccine design enabled by the viral self-cleaving peptides targets receptor binding domain (RBD), heptad repeat domain (HR), membrane glycoprotein (M) and epitopes of nsp13 of parental SARS-CoV-2. Further, and Semliki Forest virus replicon were exploited, respectively, for gene delivery and mRNA expression. We recorded potent cross-protective neutralizing antibodies in immunized mice against the SARS-CoV-2 delta variant. The vaccine protected the mice against viral replication and SARS-CoV-2-induced weight loss and lung pathology. The findings support the suitability of the model for preclinical evaluation of anti-SARS-CoV-2 therapies and vaccines. In addition, the findings provide novel insights into mRNA vaccine design against infectious diseases not limiting to SARS-CoV-2.

摘要

一种可以在任何具有标准设施的分子生物学实验室中开发的 SARS-CoV-2 小鼠模型,对于评估药物和疫苗将是有价值的。在这里,我们展示了一种利用快速腺病毒纯化方法简化的 SARS-CoV-2 小鼠模型。通过腺病毒转导人血管紧张素转换酶 2(hACE2)来生成对 SARS-CoV-2 感染敏感的小鼠。通过免疫组织化学、RT-PCR 和 qPCR 评估转导小鼠中 hACE2 的表达动力学。此外,还确定了 hACE2 支持病毒复制的能力。转导后,在至少九天内观察到小鼠肺部 hACE2 的表达。表达 hACE2 的小鼠巨噬细胞支持病毒复制,检测到高病毒滴度。接下来,进行了研究以确定 SARS-CoV-2 攻击后的病毒复制和肺部疾病。该模型支持病毒复制,受感染的小鼠出现了中等间质性肺炎特征的肺部疾病。此外,我们通过使用口服 mRNA 疫苗来证明保护作用说明了该系统的实用性。病毒自身切割肽允许的多顺反子疫苗设计靶向受体结合域(RBD)、七肽重复域(HR)、膜糖蛋白(M)和亲本 SARS-CoV-2 的 nsp13 表位。此外,分别利用 Semliki Forest 病毒复制子进行基因传递和 mRNA 表达。我们记录了免疫小鼠针对 SARS-CoV-2 德尔塔变体的强大的交叉保护中和抗体。该疫苗保护小鼠免受病毒复制和 SARS-CoV-2 诱导的体重减轻和肺部病理损伤。这些发现支持该模型用于抗 SARS-CoV-2 疗法和疫苗的临床前评估。此外,这些发现为针对不限于 SARS-CoV-2 的传染病的 mRNA 疫苗设计提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2da0/8888445/d15bc8e7ffe2/fimmu-13-811802-g001.jpg

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