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COVID-19 诊断时 IgG 糖基化改变可预测疾病严重程度。

Altered IgG glycosylation at COVID-19 diagnosis predicts disease severity.

机构信息

i3S - Institute for Research and Innovation in Health, University of Porto, Porto, Portugal.

Institute of Biomedical Sciences Abel Salazar (ICBAS), University of Porto, Porto, Portugal.

出版信息

Eur J Immunol. 2022 Jun;52(6):946-957. doi: 10.1002/eji.202149491. Epub 2022 Apr 4.

Abstract

The nature of the immune responses associated with COVID-19 pathogenesis and disease severity, as well as the breadth of vaccine coverage and duration of immunity, is still unclear. Given the unpredictability for developing a severe/complicated disease, there is an urgent need in the field for predictive biomarkers of COVID-19. We have analyzed IgG Fc N-glycan traits of 82 SARS-CoV-2+ unvaccinated patients, at diagnosis, by nano-LC-ESI-MS. We determined the impact of IgG Fc glyco-variations in the induction of NK cells activation, further evaluating the association between IgG Fc N-glycans and disease severity/prognosis. We found that SARS-CoV-2+ individuals display, at diagnosis, variations in the glycans composition of circulating IgGs. Importantly, levels of galactose and sialic acid structures on IgGs are able to predict the development of a poor COVID-19 disease. Mechanistically, we demonstrated that a deficiency on galactose structures on IgG Fc in COVID-19 patients appears to induce NK cells activation associated with increased release of IFN-γ and TNF-α, which indicates the presence of pro-inflammatory immunoglobulins and higher immune activation, associated with a poor disease course. This study brings to light a novel blood biomarker based on IgG Fc glycome composition with capacity to stratify patients at diagnosis.

摘要

与 COVID-19 发病机制和疾病严重程度相关的免疫反应的性质,以及疫苗覆盖范围的广度和免疫持续时间,目前仍不清楚。鉴于开发严重/复杂疾病的不可预测性,该领域迫切需要 COVID-19 的预测生物标志物。我们通过纳升液相色谱-电喷雾电离质谱(nano-LC-ESI-MS)分析了 82 名未接种疫苗的 SARS-CoV-2+患者在诊断时的 IgG Fc N-糖基特征。我们确定了 IgG Fc 糖型变化对 NK 细胞激活的诱导作用的影响,进一步评估了 IgG Fc N-聚糖与疾病严重程度/预后之间的关联。我们发现,SARS-CoV-2+个体在诊断时显示循环 IgG 中聚糖组成的变化。重要的是,IgG 上半乳糖和唾液酸结构的水平能够预测 COVID-19 疾病的发展情况。从机制上讲,我们证明 COVID-19 患者 IgG Fc 上半乳糖结构的缺乏似乎会诱导与 IFN-γ和 TNF-α释放增加相关的 NK 细胞激活,这表明存在促炎免疫球蛋白和更高的免疫激活,与不良的疾病过程相关。这项研究揭示了一种基于 IgG Fc 聚糖组成的新型血液生物标志物,具有在诊断时对患者进行分层的能力。

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