Activation of TSLP-IL-9 Axis Hinders the Antifibrotic Effect of ST2 Deficiency in Pulmonary Fibrosis
Sergei P Atamas1, Virginia Lockatell1, Zhongcheng Mei2
1Department of Medicine, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Abstract:
Previous studies have suggested that activation of the IL-33/ST2 axis as well as elevated expression of the full-length IL-33 precursor acting in an ST2-independent fashion both contribute to pulmonary fibrosis. The protective effect of genetic ST2 deficiency on pulmonary fibrosis is known to be partial, with unclear mechanisms preventing a more complete protection. Here, we report that ST2 deficiency failed to fully protect the lungs from excess collagen accumulation after the profibrotic bleomycin injury and simultaneously facilitated elevations in pulmonary levels of a previously suggested profibrotic mediator, IL-9, as well as a known activator of IL-9 expression, TSLP. Pulmonary CD4+ T cells were the main producers of IL-9. Neutralizing antibody-mediated in vivo blockade of TSLP potently attenuated pulmonary levels of both IL-9 and collagen in the bleomycin injury model in wild-type and particularly ST2-deficient mice. All these observations were markedly pronounced in mice with single deficiency of ST2 and the overall pattern of findings was also preserved in mice with dual deficiency of ST2 and IL-33. It was concluded that the antifibrotic effect of ST2 deficiency is hindered by the simultaneous activation of the TSLP-IL-9 axis in experimental bleomycin-induced pulmonary fibrosis. These findings inform further development of antifibrotic therapies.
Insights
Genetic ST2 deficiency partially protects against pulmonary fibrosis by reducing collagen. However, it unexpectedly increases IL-9 via TSLP, hindering complete protection. Targeting TSLP may improve antifibrotic therapies.
Area of Science:
- Immunology
- Pulmonary Medicine
- Fibrosis Research
Background:
- The IL-33/ST2 pathway and IL-33 precursor contribute to pulmonary fibrosis.
- Genetic ST2 deficiency offers only partial protection against pulmonary fibrosis, with mechanisms unclear.
Purpose of the Study:
- To investigate the mechanisms behind the partial protective effect of ST2 deficiency in pulmonary fibrosis.
- To explore the role of the TSLP-IL-9 axis in ST2-deficient mice subjected to bleomycin-induced pulmonary fibrosis.
Main Methods:
- Utilized a bleomycin-induced pulmonary fibrosis model in wild-type and ST2-deficient mice.
- Administered neutralizing antibodies against TSLP to assess its impact on IL-9 and collagen levels.
- Analyzed pulmonary cytokine levels and cell populations, including CD4+ T cells.
Main Results:
- ST2 deficiency failed to fully prevent collagen accumulation and increased pulmonary IL-9 and TSLP levels.
- Pulmonary CD4+ T cells were identified as the primary source of IL-9.
- TSLP blockade significantly reduced IL-9 and collagen levels in bleomycin-injured mice, especially those deficient in ST2.
Conclusions:
- The antifibrotic effect of ST2 deficiency is limited by the concurrent activation of the TSLP-IL-9 axis.
- Targeting the TSLP-IL-9 pathway represents a potential therapeutic strategy for experimental pulmonary fibrosis.
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