Sobetirome, a thyroid hormone receptor beta agonist, is a potential therapeutic agent for pulmonary fibrosis

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Abstract

Idiopathic pulmonary fibrosis (IPF) is a progressive and fatal disease with limited treatment options. Our group previously identified the antifibrotic potential of thyroid hormone, triiodothyronine (T3); however, clinical translation of thyroid hormone therapy is limited by its systemic adverse effects. In this study, we investigate whether sobetirome, a selective and well-tolerated thyroid hormone receptor beta (THRB) agonist, offers antifibrotic benefits of thyroid hormone while minimizing systemic toxicity.

Our study reveals that sobetirome, administered via intraperitoneal or inhalational routes, effectively mitigates bleomycin-induced pulmonary fibrosis in mice, with no evidence of toxicity. We identified that sobetirome restores mitochondrial homeostasis via activating the THRB–PPARGC1α axis. This protects alveolar type II epithelial cells from injury-induced apoptosis while selectively inducing apoptosis and metabolic reprogramming in apoptosis-resistant IPF fibroblasts. Cell-specific deletion of Ppargc1α in either alveolar epithelial cells or fibroblasts abolishes sobetirome-mediated protection, establishing PPARGC1α as an essential mediator of therapeutic response. Importantly, sobetirome reverses fibrosis-associated transcriptional programs in human IPF lung tissue, reducing expression of key fibrosis-associated genes, including collagen I alpha 1 ( COL1A1 ), collagen III alpha 1 ( COL3A1 ), periostin ( POSTN), cathepsin K ( CTSK ), and Chitinase 3 Like 1 ( CHI3L1 ), while promoting extracellular matrix remodeling, epithelial restoration, and tissue homeostasis.

Collectively, our findings identify THRB activation as a novel metabolic strategy for reversing pulmonary fibrosis. Across complementary in vitro , in vivo , and human ex vivo models, sobetirome restores mitochondrial function, modulates apoptotic pathways in pathogenic cells, and promotes fibrosis resolution, highlighting its potential as a lung-targeted therapeutic approach for IPF and other fibrotic lung diseases.

One sentence summary

Sobetirome, a thyroid hormone receptor beta agonist, exerts potent antifibrotic effects in preclinical models of pulmonary fibrosis across in vitro , in vivo , and ex vivo settings by acting on both lung epithelial and fibroblast cells.

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