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革新病毒性疾病疫苗接种:非复制信使 RNA 疫苗的有前景的临床进展。

Revolutionizing viral disease vaccination: the promising clinical advancements of non-replicating mRNA vaccines.

机构信息

School of Basic Medicine, Zunyi Medical University, West No. 6 Xuefu Road, Xinpu District, Zunyi, 563006, Guizhou, People's Republic of China.

Department of Hematology, College of Pharmacy, Army Medical University (Third Military Medical University), Chongqing, People's Republic of China.

出版信息

Virol J. 2023 Apr 7;20(1):64. doi: 10.1186/s12985-023-02023-0.

Abstract

The mRNA vaccine technology was developed rapidly during the global pandemic of COVID-19. The crucial role of the COVID-19 mRNA vaccine in preventing viral infection also have been beneficial to the exploration and application of other viral mRNA vaccines, especially for non-replication structure mRNA vaccines of viral disease with outstanding research results. Therefore, this review pays attention to the existing mRNA vaccines, which are of great value for candidates for clinical applications in viral diseases. We provide an overview of the optimization of the mRNA vaccine development process as well as the good immune efficacy and safety shown in clinical studies. In addition, we also provide a brief description of the important role of mRNA immunomodulators in the treatment of viral diseases. After that, it will provide a good reference or strategy for research on mRNA vaccines used in clinical medicine with more stable structures, higher translation efficiency, better immune efficacy and safety, shorter production time, and lower production costs than conditional vaccines to be used as preventive or therapeutic strategy for the control of viral diseases in the future.

摘要

mRNA 疫苗技术在 COVID-19 全球大流行期间迅速发展。COVID-19 mRNA 疫苗在预防病毒感染方面的关键作用也有助于探索和应用其他病毒的 mRNA 疫苗,特别是对于具有突出研究成果的病毒性疾病的非复制结构 mRNA 疫苗。因此,本综述关注现有的 mRNA 疫苗,这些疫苗对于病毒疾病的临床应用候选物具有重要价值。我们概述了 mRNA 疫苗开发过程的优化以及临床研究中显示出的良好免疫效果和安全性。此外,我们还简要描述了 mRNA 免疫调节剂在治疗病毒性疾病中的重要作用。之后,它将为研究具有更稳定结构、更高翻译效率、更好免疫效果和安全性、更短生产时间和更低生产成本的 mRNA 疫苗提供良好的参考或策略,这些疫苗可作为条件性疫苗的替代物,作为未来控制病毒性疾病的预防或治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1935/10082499/98b92a731314/12985_2023_2023_Fig1_HTML.jpg

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