Targeting early changes in the synovial microenvironment: a new class of immunomodulatory therapy?

Author:

Aungier Susan R,Cartwright Alison J,Schwenzer Anja,Marshall Jennifer L,Dyson Michael R,Slavny Peter,Parthiban Kothai,Karatt-Vellatt Aneesh,Sahbudin Ilfita,Culbert Eric,Hextall Patrick,Clanchy Felix IL,Williams Richard,Marsden Brian D,Raza Karim,Filer Andrew,Buckley Christopher Dominic,McCafferty John,Midwood Kim S

Abstract

ObjectivesControlled immune responses rely on integrated crosstalk between cells and their microenvironment. We investigated whether targeting proinflammatory signals from the extracellular matrix that persist during pathological inflammation provides a viable strategy to treat rheumatoid arthritis (RA).MethodsMonoclonal antibodies recognising the fibrinogen-like globe (FBG) of tenascin-C were generated by phage display. Clones that neutralised FBG activation of toll-like receptor 4 (TLR4), without impacting pathogenic TLR4 activation, were epitope mapped by crystallography. Antibodies stained synovial biopsies of patients at different stages of RA development. Antibody efficacy in preventing RA synovial cell cytokine release, and in modulating collagen-induced arthritis in rats, was assessed.ResultsTenascin-C is expressed early in the development of RA, even before disease diagnosis, with higher levels in the joints of people with synovitis who eventually developed RA than in people whose synovitis spontaneously resolved. Anti-FBG antibodies inhibited cytokine release by RA synovial cells and prevented disease progression and tissue destruction during collagen-induced arthritis.ConclusionsEarly changes in the synovial microenvironment contribute to RA progression; blocking proinflammatory signals from the matrix can ameliorate experimental arthritis. These data highlight a new drug class that could offer early, disease-specific immune modulation in RA, without engendering global immune suppression.

Funder

The Kennedy Trust for Rheumatology Research

National Institute for Health Research (NIHR) Birmingham Biomedical Research Centre

Arthritis Research UK

Nascient Ltd

Publisher

BMJ

Subject

General Biochemistry, Genetics and Molecular Biology,Immunology,Immunology and Allergy,Rheumatology

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