Nobel Prize in physiology or medicine 2023: Development of mRNA therapeutics that paved the path of formulation of COVID-19 vaccine

N. C. Mandal
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Abstract

Since the concept of the vaccine was developed by Edward Jenner in 1796, vaccinology has traveled a long way with gradual improvement toward developing better methods of formulation of vaccines. In this premises in the 1990s, Karikó and Weissman joined their hands and minds aiming at understanding how different RNA species interact with the immune system. During their long journey in this direction, they performed extensive studies involving well-conceived molecular biology-based experiments that resulted in a breakthrough discovery relating to RNA therapeutics in general and messenger RNA (mRNA) therapeutics in particular. In this endeavor, they developed mRNA technology that actually paved the path leading to the development of mRNA vaccine that has many advantages. In December 2019, when the deadly virus SARS-CoV-2 emerged, which, in no time, caused a pandemic as well as an epidemic, thereby throwing a fierce challenge to the total healthcare systems worldwide, it was possible to take care of that challenge through the formulation and manufacturing on a large scale the mRNA vaccine against SARS-CoV-2 using the above technology. Thus, mRNA technology has created a strong platform that has spelled out a great promise toward controlling any pathogen infection and saving human life through the development of mRNA vaccine at a quick pace. In this short review, an attempt will be made to highlight the contributions of Karikó and Weissman and how they led the formulation of a vaccine against COVID-19, which fetched them the Nobel Prize in Medicine or Physiology, 2023.
2023 年诺贝尔生理学或医学奖:开发 mRNA 疗法,为 COVID-19 疫苗的研制铺平道路
自爱德华-詹纳(Edward Jenner)于 1796 年提出疫苗的概念以来,疫苗学已经走过了漫长的道路,并逐步改进,开发出了更好的疫苗配制方法。20 世纪 90 年代,在这一前提下,卡里科和魏斯曼携手合作,旨在了解不同种类的 RNA 如何与免疫系统相互作用。在这一方向的漫长旅程中,他们进行了大量研究,包括精心构思的分子生物学实验,最终在 RNA 疗法,特别是信使 RNA (mRNA) 疗法方面取得了突破性发现。在这一努力中,他们开发出了 mRNA 技术,实际上为开发具有诸多优势的 mRNA 疫苗铺平了道路。2019 年 12 月,当致命病毒 SARS-CoV-2 出现,并在短时间内引发大流行和疫情,从而对全球整个医疗保健系统提出严峻挑战时,利用上述技术大规模配制和生产针对 SARS-CoV-2 的 mRNA 疫苗,就有可能应对这一挑战。因此,mRNA 技术创造了一个强大的平台,为通过快速开发 mRNA 疫苗来控制任何病原体感染和挽救人类生命带来了巨大希望。在这篇简短的综述中,我们将着重介绍卡里科和魏斯曼的贡献,以及他们如何领导研制出针对 COVID-19 的疫苗,并因此获得 2023 年诺贝尔医学或生理学奖。
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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