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mRNA as a Transformative Technology for Vaccine Development to Control Infectious Diseases

机译:mRNA作为用于控制传染病的疫苗开发的转化技术

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摘要

In the last two decades, there has been growing interest in mRNA-based technology for the development of prophylactic vaccines against infectious diseases. Technological advancements in RNA biology, chemistry, stability, and delivery systems have accelerated the development of fully synthetic mRNA vaccines. Potent, long-lasting, and safe immune responses observed in animal models, as well as encouraging data from early human clinical trials, make mRNA-based vaccination an attractive alternative to conventional vaccine approaches. Thanks to these data, together with the potential for generic, low-cost manufacturing processes and the completely synthetic nature, the prospects for mRNA vaccines are very promising. In addition, mRNA vaccines have the potential to streamline vaccine discovery and development, and facilitate a rapid response to emerging infectious diseases. In this review, we overview the unique attributes of mRNA vaccine approaches, review the data of mRNA vaccines against infectious diseases, discuss the current challenges, and highlight perspectives about the future of this promising technology.
机译:在过去的二十年中,人们对基于mRNA的技术开发出针对传染病的预防性疫苗的兴趣日益浓厚。 RNA生物学,化学,稳定性和递送系统的技术进步加速了全合成mRNA疫苗的开发。在动物模型中观察到的有效,持久和安全的免疫反应,以及来自早期人类临床试验的令人鼓舞的数据,使得基于mRNA的疫苗接种成为常规疫苗方法的诱人替代品。由于这些数据,加上通用的低成本制造工艺的潜力以及完全合成的性质,mRNA疫苗的前景非常广阔。此外,mRNA疫苗具有简化疫苗发现和开发,促进对新兴传染病快速反应的潜力。在这篇综述中,我们概述了mRNA疫苗方法的独特属性,回顾了针对传染病的mRNA疫苗的数据,讨论了当前的挑战,并突出了关于这一有前途技术的未来的观点。

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