Emerging synovial cell states in rheumatoid arthritis as potential therapeutic targets

Author:

Mantel Ian12,Fein Miriam R.2,Donlin Laura T.12

Affiliation:

1. Weill Cornell Medicine Graduate School

2. Hospital for Special Surgery Research Institute, New York, New York, USA

Abstract

Purpose of review To summarize recently discovered novel cell states in rheumatoid arthritis (RA) synovium that could have important implications for disease treatment. Recent findings The use of multiomic technologies, including single-cell and spatial transcriptomics and mass cytometry, has led to the discovery of several novel cell states, which could have important implications for the treatment of RA. These cells can be found in patient blood, synovial fluid, or synovial tissue and span several immune cell subsets as well as stromal cell types. These diverse cell states may represent the targets of current or future therapeutics, while their fluctuations may inform the ideal timing for therapy. Future efforts are needed to implicate how each cell state functions in the pathophysiologic network within affected joints and how medications perturb each cell state and ultimately the tissue. Summary Multiomic molecular technologies have afforded the discovery of numerous novel cellular states in RA synovium; the next challenge will be to link these states to pathophysiology and treatment response.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Rheumatology

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