Rheumatoid arthritis macrophages are primed for inflammation and display bioenergetic and functional alterations

Megan M Hanlon1, Trudy McGarry1, Viviana Marzaioli1

  • 1Molecular Rheumatology Research Group, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, Ireland.

Abstract

Insights

Rheumatoid arthritis (RA) macrophages exhibit heightened inflammation and metabolic activity, driven by NAMPT and STAT3 signaling. Inhibiting these pathways reduces inflammation and restores macrophage function in RA.

Area of Science:

  • Immunology
  • Metabolic pathways
  • Rheumatoid arthritis

Background:

  • Myeloid cells, particularly macrophages, are abundant in the rheumatoid arthritis (RA) joint and contribute significantly to disease pathogenesis.
  • Distinct functions of these infiltrating macrophages in RA remain incompletely understood, necessitating further investigation into their specific roles.

Purpose of the Study:

  • To investigate the metabolic activity of polarized macrophages infiltrating the RA joint.
  • To elucidate the impact of macrophage metabolic activity on pro-inflammatory responses in rheumatoid arthritis.

Main Methods:

  • Isolation and ex vivo differentiation of CD14+ monocytes from RA patients and healthy controls (HC).
  • Quantification of inflammatory responses and metabolic profiles using RT-PCR, western blot, Seahorse XFe technology, phagocytosis assays, transmission electron microscopy, and RNA-sequencing (RNA-seq).

Main Results:

  • RA monocytes and derived macrophages display hyper-inflammatory responses with elevated cytokine expression compared to HC.
  • RA macrophages exhibit enhanced metabolic activity, including increased oxidative phosphorylation and glycolysis, with altered mitochondrial morphology.
  • RNA-seq identified STAT3 and NAMPT as key regulators of macrophage activation states, with their inhibition reducing pro-inflammatory gene expression and NAMPT inhibition restoring phagocytic function.

Conclusions:

  • RA monocyte-derived macrophages possess a distinct inflammatory and metabolic phenotype.
  • NAMPT and STAT3 signaling pathways play a crucial role in regulating this unique RA macrophage phenotype.