This investigation explores how CD161 inhibition alters NK cell interactions, potentially improving outcomes in rheumatoid arthritis patients.
Rheumatoid arthritis (RA) is a chronic autoimmune disease that still lacks reliable biomarkers. The mechanistic role of CD161 as an inhibitory receptor in RA pathogenesis and its potential for predicting therapeutic responses require further investigation. We combined RNA sequencing (RNA-seq), single-cell RNA sequencing (scRNA-seq), and clinical sample analyses to characterize the specific expression of CD161 in RA. We constructed a collagen-induced arthritis (CIA) model and injected NK cells into the joint cavity. Additionally, we stimulated fibroblast-like synoviocytes (FLS) with IFN-γ in vitro, followed by whole-genome sequencing and in vitro cell co-culture assays, to explore the mechanism by which CD161 regulates FLS function. CD161 was specifically overexpressed in synovial NK cells from RA patients and negatively correlated with NK cell-derived IFN-γ. Using a CD56+ NK cell line with regulated CD161 expression, we demonstrated that intra-articular injection of these cells alleviated CIA synovitis severity to a certain extent. In vitro, IFN-γ stimulation of FLS followed by whole-genome sequencing, combined with CD56+ NK cell-FLS co-culture experiments, revealed that CD161 inhibited the tumor-like properties of FLS, likely via mechanisms involving IFN-γ and the PI3K-AKT pathway. CD161 is a potential biomarker for RA. Targeted inhibition of CD161 in NK cells alleviates synovial inflammation in RA, highlighting its therapeutic potential.
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Lu et al. (2025) studied this question.