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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.
Background:
Uncontrolled T-cell activation plays a key role in systemic sclerosis (SSc). Arsenic trioxide (ATO) has immunological effects and has demonstrated potential in preclinical SSc models. In this study, we assessed the efficacy of ATO in Fra2 transgenic (Fra2TG) mice, which develop severe vascular remodeling of pulmonary arterioles and nonspecific interstitial pneumonia-like lung disease, closely resembling human SSc-associated pulmonary hypertension, therefore partially resembling to the SSc human disease.
Methods:
The efficacy of ATO in Fra2TG mice was evaluated through histological scoring and determination of cell infiltration. Fibrotic changes in the lungs were assessed by measuring collagen content biochemically, using second harmonic generation to measure fibrillar collagen, and imaging via computed tomography. Cardiovascular effects were determined by measuring right ventricular systolic pressure and vessel remodeling. The mechanism of action of ATO was then investigated by analyzing lung cell infiltrates using flow cytometry and bulk RNA with sequencing techniques.
Results:
After ATO treatment, the Ashcroft histological score was substantially decreased by 33% in ATO-treated mice compared to control mice. Other investigations of fibrotic markers showed a trend of reduction in various measurements of fibrosis, but the differences did not reach significance. Further cardiovascular investigations revealed convergent findings supporting a beneficial effect of ATO, with reduced right ventricular systolic pressure and medial wall thickness, and a significant decrease in the number of muscularized distal pulmonary arteries in ATO-treated Fra2TG mice compared to untreated Fra2TG mice. Additionally, inflammatory cell infiltration was also markedly reduced in lesioned lungs. A reduction in the frequency of CD4 + and T effector memory cells, and an increase in the percentage of CD4 + T naive cells in the lungs of ATO-treated Fra-2TG mice, was observed when compared to PBS group Fra-2Tg mice. RNA-seq analysis of ATO-treated mouse lungs revealed a downregulation of biological pathways associated with immune activity and inflammation, such as T-cell activation, regulation of leucocyte activation, leucocyte cell-cell adhesion, and regulation of lymphocyte activation.
Conclusions:
Our results suggest the clinical relevance of ATO treatment in SSc. Using the Fra2TG mouse model, we observed significant lung histological changes, a trend towards a decrease in various fibrotic makers, and a strong reduction in vascular remodeling. The mechanism of action of ATO appears to involve a marked counteraction of the immune activation characteristic of SSc, particularly T-cell involvement. These findings pave the way for further studies in SSc.
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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