Arsenic trioxide demonstrates efficacy in a mouse model of preclinical systemic sclerosis

Anne Cauvet1, Arthur Decellas1, Christophe Guignabert2,3

  • 1Université de Paris, Institut Cochin, INSERM U1016 CNRS UMR8104, Paris, 75014, France.

Arthritis Research & Therapy
|September 12, 2023
PubMed
Abstract

Insights

Arsenic trioxide (ATO) shows promise in treating systemic sclerosis (SSc) by reducing lung inflammation and vascular remodeling in a mouse model. This study highlights ATO's potential to counteract T-cell activation, a key factor in SSc progression.

Area of Science:

  • Immunology
  • Pulmonology
  • Pharmacology

Background:

  • Uncontrolled T-cell activation is central to systemic sclerosis (SSc).
  • Arsenic trioxide (ATO) exhibits immunomodulatory properties and preclinical efficacy in SSc models.
  • The Fra2 transgenic (Fra2TG) mouse model mimics SSc-associated pulmonary hypertension and lung disease.

Purpose of the Study:

  • To evaluate the efficacy of arsenic trioxide (ATO) in the Fra2TG mouse model of systemic sclerosis (SSc).
  • To investigate the underlying mechanisms of ATO's action in mitigating SSc-like pathology.

Main Methods:

  • Fra2TG mice were treated with ATO and assessed via histological scoring, biochemical collagen measurement, and computed tomography.
  • Cardiovascular effects were evaluated by measuring right ventricular systolic pressure and vessel remodeling.
  • Lung cell infiltrates and gene expression were analyzed using flow cytometry and RNA sequencing.

Main Results:

  • ATO treatment significantly reduced lung histological scores by 33% and inflammatory cell infiltration.
  • A notable decrease in vascular remodeling, including reduced right ventricular systolic pressure and medial wall thickness, was observed.
  • ATO modulated T-cell populations and downregulated immune and inflammatory pathways, including T-cell activation.

Conclusions:

  • Arsenic trioxide (ATO) demonstrates significant therapeutic potential in a preclinical model of systemic sclerosis (SSc).
  • ATO effectively reduces lung histological changes and vascular remodeling, counteracting key SSc pathologies.
  • The mechanism involves suppressing aberrant immune activation, particularly T-cell responses, suggesting clinical relevance for SSc treatment.

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