AI Article Synopsis

  • Myeloid cells, specifically macrophages, play a crucial role in regulating inflammation in synovial joints, particularly in rheumatoid arthritis, where the molecule IL-34 is significantly expressed.
  • IL-34 interacts with a newly identified receptor called PTPRZ found on macrophages, and their absence in specific mouse models led to more severe arthritis symptoms.
  • IL-34 and PTPRZ work to promote a reparative macrophage phenotype, enhancing the clearance of dying neutrophils and reducing their recruitment to the inflamed joint, ultimately limiting destructive inflammation and joint damage.

Article Abstract

Myeloid cell mediated mechanisms regulate synovial joint inflammation. IL-34, a macrophage (Mø) growth and differentiation molecule, is markedly expressed in neutrophil and Mø-rich arthritic synovium. IL-34 engages a newly identified independent receptor, protein-tyrosine phosphatase, receptor-type, zeta (PTPRZ), that we find is expressed by Mø. As IL-34 is prominent in rheumatoid arthritis, we probed for the IL-34 and PTPRZ-dependent myeloid cell mediated mechanisms central to arthritis using genetic deficient mice in K/BxN serum-transfer arthritis. Unanticipatedly, we now report that IL-34 and PTPRZ limited arthritis as intra-synovial pathology and bone erosion were more severe in IL-34 and PTPRZ KO mice during induced arthritis. We found that IL-34 and PTPRZ: (i) were elevated, bind, and induce downstream signaling within the synovium in arthritic mice and (ii) were upregulated in the serum and track with disease activity in rheumatoid arthritis patients. Mechanistically, IL-34 and PTPRZ skewed Mø toward a reparative phenotype, and enhanced Mø clearance of apoptotic neutrophils, thereby decreasing neutrophil recruitment and intra-synovial neutrophil extracellular traps. With fewer neutrophils and neutrophil extracellular traps in the synovium, destructive inflammation was restricted, and joint pathology and bone erosion diminished. These novel findings suggest that IL-34 and PTPRZ-dependent mechanisms in the inflamed synovium limit, rather than promote, inflammatory arthritis.

Download full-text PDF

Source
http://dx.doi.org/10.1038/s41374-022-00772-0DOI Listing

Publication Analysis

Top Keywords

il-34 ptprz
16
il-34
10
protein-tyrosine phosphatase
8
arthritis
8
myeloid cell
8
cell mediated
8
mediated mechanisms
8
rheumatoid arthritis
8
il-34 ptprz-dependent
8
pathology bone
8

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!