Disease-associated B cells and immune endotypes shape adaptive immune responses to SARS-CoV-2 mRNA vaccination in human SLE

疾病相关 B 细胞和免疫内型塑造人类 SLE 对 SARS-CoV-2 mRNA 疫苗接种的适应性免疫反应

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作者:Caterina E Faliti, Trinh T P Van, Fabliha A Anam, Narayanaiah Cheedarla, M Elliott Williams, Ashish Kumar Mishra, Sabeena Y Usman, Matthew C Woodruff, Geoff Kraker, Martin C Runnstrom, Shuya Kyu, Daniel Sanz, Hasan Ahmed, Midushi Ghimire, Andrea Morrison-Porter, Hannah Quehl, Natalie S Haddad, Weiro

Abstract

Severe acute respiratory syndrome coronavirus 2 mRNA vaccination has reduced effectiveness in certain immunocompromised individuals. However, the cellular mechanisms underlying these defects, as well as the contribution of disease-induced cellular abnormalities, remain largely unexplored. In this study, we conducted a comprehensive serological and cellular analysis of patients with autoimmune systemic lupus erythematosus (SLE) who received the Wuhan-Hu-1 monovalent mRNA coronavirus disease 2019 vaccine. Our findings revealed that patients with SLE exhibited reduced avidity of anti-receptor-binding domain antibodies, leading to decreased neutralization potency and breadth. We also observed a sustained anti-spike response in IgD-CD27- 'double-negative (DN)' DN2/DN3 B cell populations persisting during memory responses and with greater representation in the SLE cohort. Additionally, patients with SLE displayed compromised anti-spike T cell immunity. Notably, low vaccine efficacy strongly correlated with higher values of a newly developed extrafollicular B and T cell score, supporting the importance of distinct B cell endotypes. Finally, we found that anti-BAFF blockade through belimumab treatment was associated with poor vaccine immunogenicity due to inhibition of naive B cell priming and an unexpected impact on circulating T follicular helper cells.

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