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多系统内皮炎症:含mRNA的新冠疫苗接种后不良事件的关键驱动因素

Multisystem Endothelial Inflammation: A Key Driver of Adverse Events Following mRNA-Containing COVID-19 Vaccines.

作者信息

Szebeni János, Koller Akos

机构信息

Nanomedicine Research and Education Center, Institute of Translational Medicine Semmelweis University, 1089 Budapest, Hungary.

SeroScience LLC, 1125 Budapest, Hungary.

出版信息

Vaccines (Basel). 2025 Aug 12;13(8):855. doi: 10.3390/vaccines13080855.

Abstract

mRNA-LNP-based COVID-19 vaccines, namely Pfizer-BioNTech's Comirnaty and Moderna's Spikevax, were successfully deployed to help control the SARS-CoV-2 pandemic, and their updated formulations continue to be recommended, albeit only for high-risk populations. One widely discussed aspect of these vaccines is their uniquely broad spectrum and increased incidence of adverse events (AEs), collectively referred to as post-vaccination syndrome (PVS). Although the reported PVS rate is low, the high number of administered doses among healthy individuals has resulted in a substantial number of reported vaccine-related injuries. A prominent manifestation of PVS is multisystem inflammation, hypothesized to result from the systemic transfection of organ cells with genetic instructions for a toxin, the spike protein, delivered with lipid nanoparticles (LNPs). In this narrative review, we focus on endothelial cells in the microcirculatory networks of various organs as primary sites of transfection with mRNA-LNP and consequent PVS. We outline the anatomical variations in the microcirculation contributing to the individual variability of symptoms and examine the molecular and cellular responses to vaccine nanoparticle exposure at the endothelial cell level with a focus on the pathways of a sustained cascade of toxic and autoimmune processes. A deeper understanding of the mechanisms underlying mRNA-LNP-induced AEs and PVS at the organ and cellular levels is critical for improving the safety of future vaccines and other therapeutic applications of this groundbreaking technology.

摘要

基于信使核糖核酸-脂质纳米颗粒(mRNA-LNP)的新冠疫苗,即辉瑞-生物科技公司的Comirnaty和莫德纳公司的Spikevax,已成功投入使用以帮助控制新冠病毒大流行,其更新后的配方仍被推荐使用,不过仅适用于高危人群。这些疫苗一个被广泛讨论的方面是其独特的广谱性以及不良事件(AE)发生率的增加,这些不良事件统称为疫苗接种后综合征(PVS)。尽管报告的PVS发生率较低,但健康个体中大量的接种剂量导致了大量与疫苗相关的损伤报告。PVS的一个突出表现是多系统炎症,据推测这是由于携带毒素(刺突蛋白)的遗传指令通过脂质纳米颗粒(LNP)对器官细胞进行全身转染所致。在这篇叙述性综述中,我们聚焦于各器官微循环网络中的内皮细胞,将其作为mRNA-LNP转染及后续PVS的主要部位。我们概述了微循环中的解剖学差异如何导致症状的个体差异,并在内皮细胞水平研究了对疫苗纳米颗粒暴露的分子和细胞反应,重点关注持续的毒性和自身免疫过程级联反应的途径。在器官和细胞水平上更深入地了解mRNA-LNP诱导不良事件和PVS的机制,对于提高未来疫苗以及这项开创性技术的其他治疗应用的安全性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d0a/12390297/092b1bdb6388/vaccines-13-00855-g001.jpg

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