Targeting interferon responses in juvenile dermatomyositis: Siglec-1 as an in vitro biomarker for JAK inhibitor efficacy

Publication date

2025-09-01

Authors

Veldkamp, Saskia R.ORCID 0000-0002-1626-353X
Reugebrink, Maud
Evers, Sanne W
Moreau, Thomas R J
Bondet, Vincent
Armbrust, Wineke
van den Berg, J Merlijn
Hissink Muller, Petra C E
Kamphuis, Sylvia
Schatorjé, Ellen

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Supervisors

Document Type

Article

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Abstract

Objectives For IFN-driven diseases, such as juvenile dermatomyositis (JDM), there is a critical need for targeted therapies. We aimed to develop an in vitro model, using Siglec-1 as read-out, to evaluate inhibition of IFN-mediated responses with different JAK inhibitors (JAKi). Methods Healthy donor (HD) PBMCs were cultured with type I and II IFNs, TLR agonists and plasma or serum from patients (JDM, DM, JSLE, COVID-19) and HDs. Siglec-1 expression on CD14+ monocytes was analyzed using flow cytometry. Inhibitory assays involved pre-incubation with JAKi (filgotinib, tofacitinib, baricitinib, ruxolitinib, deucravacitinib) and interferon-α/β receptor (IFNAR)-blocking antibody. Correlations between plasma-induced Siglec-1 levels and clinical disease activity were analyzed in JDM patients, as well as correlations with IFN-α and -β plasma levels. Results Siglec-1 was induced after 18 h of stimulation with type I IFNs and TLR-3/7/9 agonists, with minimal induction by IFN-γ. IFNAR blockade prevented type I IFN- and TLR-mediated induction. JAKi inhibited Siglec-1 induction by IFN-α and -β in a dose-dependent manner. Co-culture with plasma or serum from patients with IFN-driven diseases induced Siglec-1 expression on healthy monocytes, which could be inhibited by JAKi and IFNAR blockade. Siglec-1 levels induced by JDM plasma correlated strongly with clinical disease activity and IFN-β plasma levels. Conclusion Siglec-1 is an easy and reliable in vitro marker for type I IFN responses. Its induction can be inhibited by JAKi. The type I IFN signature in JDM is likely predominantly driven by IFN-β. This assay holds promise for precision treatment strategies in JDM and other IFN-driven diseases.

Keywords

assay, interferon, JAK inhibition, juvenile dermatomyositis, precision treatment, Siglec-1, Rheumatology, Pharmacology (medical), Journal Article

Citation

Veldkamp, S R, Reugebrink, M, Evers, S W, Moreau, T R J, Bondet, V, Armbrust, W, van den Berg, J M, Hissink Muller, P C E, Kamphuis, S, Schatorjé, E, Delemarre, E M, van der Kooi, A J, Bader-Meunier, B, Duffy, D, Rodero, M P, Raaphorst, J, van Royen-Kerkhof, A, Jansen, M H A & van Wijk, F 2025, 'Targeting interferon responses in juvenile dermatomyositis : Siglec-1 as an in vitro biomarker for JAK inhibitor efficacy', Rheumatology (Oxford, England), vol. 64, no. 9, pp. 5132-5141. https://doi.org/10.1093/rheumatology/keaf227