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减轻宿主微小RNA干扰以提高公共卫生干预中mRNA疫苗的效力。

Mitigating host microRNA interference to enhance mRNA vaccine efficacy in public health interventions.

作者信息

Xu Tielong, Lin Ziqi, Yu Yicheng, Irfan Muhammad, Ahmed Munir, Septriana Maya, Sumantri Twinky Zebrina Cysta, Amalia Anindini Winda, Zheng Bin

机构信息

Evidence-Based Medicine Research Center, Jiangxi University of Chinese Medicine, Nanchang, Jiangxi, People's Republic of China.

Affiliated hospital, Jiangxi University of Chinese Medicine, Nanchang, People's Republic of China.

出版信息

Infect Dis Poverty. 2025 Apr 27;14(1):32. doi: 10.1186/s40249-025-01308-6.

Abstract

BACKGROUND

While mRNA vaccines represent a transformative platform for infectious disease control, their efficacy in antigen-presenting cells (APCs) remains vulnerable to endogenous regulatory networks, particularly microRNA (miR)-mediated translational suppression. This study addresses a critical gap in current vaccine design paradigms by systematically investigating host miR interference - an understudied barrier to robust antigen production.

MAIN TEXT

APCs express cell-type-specific miR repertoires capable of binding vaccine mRNAs through conserved seed sequences, as evidenced by synthesis of experimental data from 67 studies demonstrating miR-mediated repression of exogenous transcripts. To decode these inhibitory interactions, the commentary proposes an integrated multi-omics framework combining Argonaute immunoprecipitation with crosslinking-based miR-mRNA interactome sequencing, enabling precise mapping of miR-vaccine mRNA binding events in vaccine-transfected APCs. Furthermore, the commentary suggests two actionable strategies for evading miR interference: (1) Synonymous codon optimization at seed-match regions, achieving binding energy reduction while preserving antigenicity through degeneracy of genetic coding; (2) Targeted co-delivery of miR inhibitors. By bridging host RNA biology and vaccine engineering, this work provides a blueprint for developing miR-resistant mRNA vaccines for public health interventions.

CONCLUSIONS

miRs may inhibit mRNA vaccine translation in APCs, potentially reducing antigen production and weakening the resulting immune response. To address this, next-generation mRNA vaccines should incorporate "miR-proofing" strategies during design to avoid miR interference.

摘要

背景

虽然mRNA疫苗是传染病防控的变革性平台,但其在抗原呈递细胞(APC)中的效力仍易受内源性调控网络影响,尤其是微小RNA(miR)介导的翻译抑制。本研究通过系统研究宿主miR干扰(这是一个尚未得到充分研究的影响高效抗原产生的障碍),填补了当前疫苗设计范式中的关键空白。

正文

APC表达能够通过保守种子序列与疫苗mRNA结合的细胞类型特异性miR库,67项研究的实验数据合成表明miR介导对外源转录本的抑制,证明了这一点。为了解码这些抑制性相互作用,该评论文章提出了一个综合多组学框架,将AGO免疫沉淀与基于交联的miR-mRNA相互作用组测序相结合,能够精确绘制疫苗转染的APC中miR-疫苗mRNA结合事件。此外,该评论文章还提出了两种规避miR干扰的可行策略:(1)在种子匹配区域进行同义密码子优化,通过遗传编码的简并性降低结合能,同时保持抗原性;(2)靶向共递送miR抑制剂。通过将宿主RNA生物学与疫苗工程联系起来,这项工作为开发用于公共卫生干预的抗miR mRNA疫苗提供了蓝图。

结论

miR可能会抑制APC中mRNA疫苗的翻译,从而可能减少抗原产生并削弱由此产生的免疫反应。为解决这一问题,下一代mRNA疫苗在设计时应纳入“抗miR验证”策略,以避免miR干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbb2/12034212/b6c3c7b2af4d/40249_2025_1308_Fig1_HTML.jpg

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