ArticleRespiratory research2023
Inositol possesses antifibrotic activity and mitigates pulmonary fibrosis.
Article in Respiratory research, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 16 citations in OpenAlex.
- Pathway-level epigenetic modeling illuminates the methylation architecture to asthma risk across tissues.Epigenetics & chromatin · 2026Article
- Myo-Inositol modulates AKT signalling, mitochondrial protein expression and intracellular Ca²⁺dynamics in human dermal fibroblasts.Scientific reports · 2026Article
- Multi-omics integration andFrontiers in immunology · 2026Article
- Altered Metabolism in Idiopathic Pulmonary Fibrosis.Journal of cellular physiology · 2025Review
- EGOI-PCOS survey on the prevalence of respiratory disorders associated with polycystic ovary syndrome.Multidisciplinary respiratory medicine · 2025Article
- Repurposing flavopiridol as an inhaled therapeutic for pulmonary fibrosis.European journal of pharmacology · 2025Article
- Metabolic dysregulation in pulmonary fibrosis: insights into amino acid contributions and therapeutic potential.Cell death discovery · 2025Review
- The Therapeutic Potential of Myo-Inositol in Managing Patients with Respiratory Diseases.International journal of molecular sciences · 2025Review
- A pilot metabolomics study across the continuum of interstitial lung disease fibrosis severity.Physiological reports · 2024Article
- Trigonelline hydrochloride attenuates silica-induced pulmonary fibrosis by orchestrating fibroblast to myofibroblast differentiation.Respiratory research · 2024Article
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Authors and funding
7 authors at 1 institution in 1 country.
Funding
Abstract
backgroundMyo-inositol (or inositol) and its derivatives not only function as important metabolites for multiple cellular processes but also act as co-factors and second messengers in signaling pathways. Although inositol supplementation has been widely studied in various clinical trials, little is known about its effect on idiopathic pulmonary fibrosis (IPF). Recent studies have demonstrated that IPF lung fibroblasts display arginine dependency due to loss of argininosuccinate synthase 1 (ASS1). However, the metabolic mechanisms underlying ASS1 deficiency and its functional consequence in fibrogenic processes are yet to be elucidated.
methodsMetabolites extracted from primary lung fibroblasts with different ASS1 status were subjected to untargeted metabolomics analysis. An association of ASS1 deficiency with inositol and its signaling in lung fibroblasts was assessed using molecular biology assays. The therapeutic potential of inositol supplementation in fibroblast phenotypes and lung fibrosis was evaluated in cell-based studies and a bleomycin animal model, respectively.
resultsOur metabolomics studies showed that ASS1-deficient lung fibroblasts derived from IPF patients had significantly altered inositol phosphate metabolism. We observed that decreased inositol-4-monophosphate abundance and increased inositol abundance were associated with ASS1 expression in fibroblasts. Furthermore, genetic knockdown of ASS1 expression in primary normal lung fibroblasts led to the activation of inositol-mediated signalosomes, including EGFR and PKC signaling. Treatment with inositol significantly downregulated ASS1 deficiency-mediated signaling pathways and reduced cell invasiveness in IPF lung fibroblasts. Notably, inositol supplementation also mitigated bleomycin-induced fibrotic lesions and collagen deposition in mice.
conclusionThese findings taken together demonstrate a novel function of inositol in fibrometabolism and pulmonary fibrosis. Our study provides new evidence for the antifibrotic activity of this metabolite and suggests that inositol supplementation may be a promising therapeutic strategy for IPF.
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