mRNA疫苗预示着疫苗学的新时代

Ketaki Shinde, Sonam Bendre, Niraj Kale, Suhit S. Gilda
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引用次数: 2

摘要

疫苗接种对传染病的控制产生了重大影响。然而,仍有一些传染病尚未研制出有效的疫苗。在过去的二十年里,人们对基于rna的技术产生治疗性疫苗产生了很大的兴趣。mRNA疫苗的适应性,以及它们触发细胞和体液反应的潜力,是它们的好处之一。此外,由于它们与模式识别受体(PRRs)的复杂相互作用,mrna具有固有的辅助特性。这种鉴定在刺激抗原呈递细胞(APCs)方面是有利的,在间接限制mRNA翻译方面是有害的。我们强调了mRNA分子如何触发许多先天反应机制,以及每个元件(从5'帽到poly-A尾)如何干扰先天/适应性免疫反应。mRNA疫苗能够迅速开发,并成为对抗传染性疾病的有力工具。本文提供了mRNA疫苗的全面概述,包括对未来mRNA疫苗开发的建议,以及安全性问题和个性化疫苗。我们关注mRNA的传递和免疫激活,这两者对于mRNA疫苗的成功接种都具有重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The mRNA Vaccine Heralds a New Era in Vaccinology
Vaccination has had a significant impact on infectious diseases control. However, there are still a number of infectious diseases for which an effective vaccine has yet to be developed. There has been a lot of interest in RNA-based technologies for the creation of therapeutic vaccines over the last two decades. The adaptability of mRNA vaccines, as well as their potential to trigger cellular and humoral responses, are among their benefits. Furthermore, because of their intricate interaction with pattern recognition receptors (PRRs), mRNAs have inherent adjuvant qualities. This identification can be advantageous in terms of stimulating antigen-presenting cells (APCs) or harmful in terms of limiting mRNA translation indirectly. We highlight how numerous innate response mechanisms are triggered by mRNA molecules, and how each element, from the 5' cap to the poly-A tail, interferes with innate/adaptive immune responses. mRNA vaccines have the ability to be developed quickly and to be a strong tool in the fight against infectious illnesses. This article provides a thorough overview of mRNA vaccines, including recommendations for future mRNA vaccine development, as well as safety concerns and personalised vaccines. We focused on mRNA delivery and immunological activation, both which have important role for successful mRNA vaccination.
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