COVID-19疫苗ChAdOx1被抗载体抗体活化,可激活补体并促进病毒载体吞噬。

IF 4.1 4区 医学 Q2 IMMUNOLOGY
Eija Nissilä, Leo Starck, Elias Aho, Erika Venerandi, Pinja Jalkanen, Katarzyna Leskinen, Pavel Uvarov, Päivi Saavalainen, Ilkka Julkunen, Juha Kotimaa, Karita Haapasalo, Seppo Meri
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引用次数: 0

摘要

在COVID-19大流行期间,ChAdOx1 nCoV-19疫苗已被大规模使用。与mRNA疫苗相比,其有限的疗效和某些潜在的副作用引发了一个问题,即抗腺病毒载体抗体是否会影响对疫苗的免疫反应。研究了ChAdOx1对补体的激活作用和ChAdOx1对白细胞的吞噬作用。测定血浆抗ChAdOx1和人腺病毒2 (hAdV2)六元蛋白IgG水平(n = 20),并从高滴度和低滴度血浆中分离IgG (n = 3)。补体活化通过免疫印迹法测定C3的裂解,ELISA法测定C3a和sC5b-9的生成。用补体和IgG对phrodo标记的ChAdOx1进行活化,用流式细胞术研究ChAdOx1对体外分离血PMNs的吞噬作用。通过RNA-seq分析暴露于ChAdOx1的PMN细胞的转录组学特征。ChAdOx1以抗腺病毒抗体依赖的方式激活经典补体途径。个体血清中末端补体复合物sC5b-9的生成与抗hadv2六邻体和抗chadox1 IgG水平相关。ChAdOx1的吞噬作用与抗hadv2六邻体IgG、抗ChAdOx1 IgG和血清sC5b-9水平也显著相关。在正常血清存在的情况下,高滴度抗hadv2六邻体IgG增加吞噬能力。抗载体抗体诱导补体快速激活,促进中性粒细胞对ChAdOx1疫苗的吞噬。此外,转录组学分析显示,ChAdOx1疫苗在体外诱导补体相关基因上调。因此,抗腺病毒载体抗体和补体活化可能影响ChAdOx1疫苗对抗SARS-CoV-2的疗效,并参与疫苗相关的副作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The COVID-19 vaccine ChAdOx1 is opsonized by anti-vector antibodies that activate complement and promote viral vector phagocytosis.

The ChAdOx1 nCoV-19 vaccine has been in large-scale use during the COVID-19 pandemic. Limited efficacy compared to mRNA vaccines and certain potential side effects raise the question of whether anti-adenoviral vector antibodies influence immune responses against the vaccine. Complement activation by ChAdOx1 and leukocyte phagocytosis of ChAdOx1 in vitro were studied. Plasma IgG levels against ChAdOx1 and human adenovirus 2 (hAdV2) hexon protein were determined (n = 20) and IgGs from high- and low-titre plasmas were isolated (n = 3). Complement activation was measured as cleavage of C3 by immunoblotting and generation of C3a and sC5b-9 by ELISA. pHrodo-labelled ChAdOx1 was opsonized with complement and IgG, and phagocytosis by isolated blood PMNs in vitro was studied by flow cytometry. The transcriptomic profile of PMN cells exposed to ChAdOx1 was analysed by RNA-seq. ChAdOx1 activated the classical complement pathway in an anti-adenovirus antibody-dependent manner. Generation of the terminal complement complex sC5b-9 in individual sera correlated with anti-hAdV2 hexon and anti-ChAdOx1 IgG levels. Phagocytosis of ChAdOx1 also correlated significantly with anti-hAdV2 hexon IgG, anti-ChAdOx1 IgG and serum sC5b-9 levels. High-titre anti-hAdv2 hexon IgG increased phagocytosis in the presence of normal serum. Anti-vector antibodies induced rapid complement activation and promoted phagocytosis of the ChAdOx1 vaccine by neutrophils. Moreover, transcriptomic analysis revealed upregulation of complement-related genes induced by the ChAdOx1 vaccine in vitro. Anti-adenovirus vector antibodies and complement activation may thus influence the efficacy of the ChAdOx1 vaccine against SARS-CoV-2 and be also involved in vaccine-related side effects.

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来源期刊
CiteScore
7.70
自引率
5.40%
发文量
109
审稿时长
1 months
期刊介绍: This peer-reviewed international journal publishes original articles and reviews on all aspects of basic, translational and clinical immunology. The journal aims to provide high quality service to authors, and high quality articles for readers. The journal accepts for publication material from investigators all over the world, which makes a significant contribution to basic, translational and clinical immunology.
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