The pivotal role of uridine modifications in the development of mRNA technology

P. Rzymski
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引用次数: 0

Abstract

In 2023, Katalin Karikó and Drew Weissman were awarded the Nobel Prize in Physiology or Medicine for their nucleoside base modifications research that later enabled mRNA vaccine development against COVID-19. This paper briefly reviews these achievements in the context of the development of mRNA technology and its enormous potential for medicine in the prevention of various infectious diseases and cancer treatment, including personalized therapies. It is beyond any doubt that discoveries made by Karikó and Weissman were pivotal in overcoming one of the major hurdles in the practical application of mRNA molecules, i.e., their recognition by endosomal Toll-like receptors and downstream innate immune response, ultimately leading to the decreased translational activity of exogenous mRNA molecules and their degradation. Although the Nobel Prize for Karikó and Weissman is fully justified, it must be stressed that the mRNA technology would never unfold its potential for public health without a collective scientific effort encompassing over 40 years of research.
尿苷修饰在 mRNA 技术发展中的关键作用
2023年,Katalin Karikó和Drew Weissman因核苷基修饰研究获得诺贝尔生理学或医学奖,该研究后来使针对COVID-19的mRNA疫苗得以开发。本文简要回顾了mRNA技术的发展及其在预防各种传染病和癌症治疗(包括个性化治疗)方面的巨大潜力。毫无疑问,Karikó和Weissman的发现对于克服mRNA分子实际应用中的一个主要障碍至关重要,即它们被内体toll样受体识别和下游先天免疫反应,最终导致外源mRNA分子的翻译活性降低和降解。虽然Karikó和Weissman获得诺贝尔奖是完全合理的,但必须强调的是,如果没有包括40多年研究在内的集体科学努力,mRNA技术永远不会展现其对公共卫生的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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