Activation of the Lectin Pathway Drives Persistent Complement Dysregulation in Long COVID.

IF 5 3区 医学 Q2 IMMUNOLOGY
Immunology Pub Date : 2026-06-01 Epub Date: 2026-01-25 DOI:10.1111/imm.70110
Samuel B K Keat, Priyanka Khatri, Youssif M Ali, Chanuka H Arachchilage, Gregory Demopulos, Kirsten Baillie, Kelly L Miners, Kristin Ladell, Samantha A Jones, Helen E Davies, David A Price, Wioleta M Zelek, B Paul Morgan, Wilhelm J Schwaeble, Nicholas J Lynch
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Abstract

Long COVID affects a substantial proportion of survivors of acute infection with severe acute respiratory syndrome-associated coronavirus-2 (SARS-CoV-2), who suffer a variety of symptoms that limit their quality of life and economic activity. Although the aetiology of long COVID is obscure, it appears to be a chronic inflammatory condition. Complement dysregulation is a prevalent feature of long COVID. Specifically, markers of classical, alternative, and terminal pathway activation are often elevated in patients with this condition. Here, we used a sensitive assay for mannan-binding lectin-associated serine protease-2 (MASP-2)/C1Inh complexes to analyse lectin pathway activation in a previously characterised cohort of patients with long COVID (n = 159) and healthy convalescent individuals with no persistent symptoms after infection with SARS-CoV-2 (n = 76). The data were combined with those from the most predictive complement analytes identified previously to delineate potential biomarkers of long COVID. MASP-2/C1Inh complexes were significantly elevated in patients with long COVID (p = 0.0003). Generalised linear modelling further identified an optimal set of four markers, namely iC3b (alternative pathway), TCC (terminal pathway), MASP-2/C1Inh (lectin pathway), and the complement regulator properdin, which had a receiver operating characteristic predictive power of 0.796 (95% confidence interval = 0.664-0.905). Combinations of the classical pathway markers C4, C1q, and C1s/C1Inh were poorly predictive of long COVID. These findings demonstrate that activation of the lectin complement pathway, which occurs upstream of the alternative and terminal pathways and can be inhibited therapeutically, is a salient feature of long COVID.

凝集素通路激活驱动长COVID持续补体失调
长期COVID影响了很大一部分急性感染严重急性呼吸综合征相关冠状病毒-2 (SARS-CoV-2)的幸存者,他们患有各种症状,限制了他们的生活质量和经济活动。虽然长冠肺炎的病因不明,但它似乎是一种慢性炎症。补体失调是长COVID的普遍特征。具体来说,经典、替代和终端通路激活的标志物在这种情况下经常升高。在这里,我们使用甘露聚糖结合凝集素相关丝氨酸蛋白酶-2 (MASP-2)/C1Inh复合物的敏感试验来分析先前表征的长COVID患者(n = 159)和感染SARS-CoV-2后无持续症状的健康恢复期个体(n = 76)的凝集素途径激活情况。将这些数据与之前确定的最具预测性的补体分析相结合,以描绘长冠状病毒的潜在生物标志物。长冠状病毒感染者MASP-2/C1Inh复合物水平显著升高(p = 0.0003)。广义线性模型进一步确定了iC3b(替代途径)、TCC(终端途径)、MASP-2/C1Inh(集素途径)和补体调节因子properdin这四个最优标记,它们的接受者工作特征预测能力为0.796(95%置信区间= 0.664-0.905)。经典途径标记物C4、C1q和C1s/C1Inh的组合对长COVID的预测能力较差。这些发现表明,凝集素补体途径的激活发生在替代途径和终末途径的上游,并且可以在治疗上被抑制,这是长COVID的一个显著特征。
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来源期刊
Immunology
Immunology 医学-免疫学
CiteScore
11.90
自引率
1.60%
发文量
175
审稿时长
4-8 weeks
期刊介绍: Immunology is one of the longest-established immunology journals and is recognised as one of the leading journals in its field. We have global representation in authors, editors and reviewers. Immunology publishes papers describing original findings in all areas of cellular and molecular immunology. High-quality original articles describing mechanistic insights into fundamental aspects of the immune system are welcome. Topics of interest to the journal include: immune cell development, cancer immunology, systems immunology/omics and informatics, inflammation, immunometabolism, immunology of infection, microbiota and immunity, mucosal immunology, and neuroimmunology. The journal also publishes commissioned review articles on subjects of topical interest to immunologists, and commissions in-depth review series: themed sets of review articles which take a 360° view of select topics at the heart of immunological research.
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