Epigenetic changes in inflammatory arthritis monocytes contribute to disease and can be targeted by JAK inhibition

炎症性关节炎单核细胞的表观遗传变化会导致疾病,可以通过 JAK 抑制来靶向治疗

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作者:Janneke G C Peeters, Arjan Boltjes, Rianne C Scholman, Stephin J Vervoort, Paul J Coffer, Michal Mokry, Sebastiaan J Vastert, Femke van Wijk, Jorg van Loosdregt

Conclusion

This study provides novel insights into epigenetic regulation of inflammatory arthritis patient-derived monocytes and highlights the therapeutic potential of epigenetic modulation for the treatment of inflammatory rheumatic diseases.

Methods

RNA sequencing and H3K27me3 chromatin immunoprecipitation sequencing (ChIP-seq) were used to analyse the transcriptional and epigenetic profile, respectively, of JIA synovial fluid-derived monocytes.

Results

Synovial-derived monocytes display an activated phenotype, which is regulated on the epigenetic level. IFN signalling-associated genes are increased and epigenetically altered in synovial monocytes, indicating a driving role for IFN in establishing the local inflammatory phenotype. Treatment of synovial monocytes with the Janus-associated kinase (JAK) inhibitor ruxolitinib, which inhibits IFN signalling, transformed the activated enhancer landscape and reduced disease-associated gene expression, thereby inhibiting the inflammatory phenotype.

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