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Updated: Dec 12, 2025

Refined Murine Model of Idiopathic Pulmonary Fibrosis
Published on: June 17, 2025
Sirtuins as endogenous regulators of lung fibrosis: A current perspective
Somnath Mazumder1, Mukta Barman2, Uday Bandyopadhyay3
1Division of Infectious Diseases and Immunology, CSIR-Indian Institute of Chemical Biology, 4 Raja S.C. Mullick Road, Kolkata 700032, West Bengal, India.
Abstract:
Fibrotic lung diseases qualify among the most dreaded irreversible interstitial pulmonary complications with progressive yet largely unpredictable clinical course. Idiopathic pulmonary fibrosis (IPF) is the most challenging prototype characterized by unknown and complex molecular etiology, severe dearth of non-invasive therapeutic options and average lifespan of 2-5 years in patients post diagnosis. Lung fibrosis (LF) is a leading cause of death in the industrialized world with the propensity to contract, significantly increasing with age. Approximately 45% deaths in US are attributed to fibrotic diseases while around 7% respiratory disease-associated deaths, annually in UK, are actually attributed to IPF. Recent developments in the field of LF have unambiguously pointed towards the pivotal role of Sirtuins (SIRTs) in regulating disease progression, thereby qualifying as potential anti-fibrotic drug targets. These NAD+-dependent lysine deacetylases, deacylases and ADP-ribosyltransferases are evolutionarily conserved proteins, regulated by diverse metabolic/environmental factors and implicated in age-related degenerative and inflammatory disorders. While SIRT1, SIRT6 and SIRT7 are predominantly nuclear, SIRT3, SIRT4, SIRT5 are mainly mitochondrial and SIRT2 is majorly cytosolic with occasional nuclear translocation. SIRT1, SIRT3, SIRT6 and SIRT7 are documented as cytoprotective sirtuins implicated in cardiovascular, pulmonary and metabolic diseases including fibrosis; however functional roles of remaining sirtuins in pulmonary pathologies are yet elusive. Here, we provide a comprehensive recent update on the regulatory role of sirtuins on LF along with discussion on potential therapeutic modulation of endogenous Sirtuin expression through synthetic/plant-derived compounds which can help synthetic chemists and ethnopharmacologists to design new-generation cheap, non-toxic Sirtuin-based drugs against LF.
Insights
Sirtuins (SIRTs) regulate lung fibrosis (LF) progression. Targeting these proteins offers a promising strategy for developing new, non-toxic anti-fibrotic drugs for idiopathic pulmonary fibrosis (IPF).
Area of Science:
- Pulmonary Medicine
- Molecular Biology
- Pharmacology
Background:
- Fibrotic lung diseases, including idiopathic pulmonary fibrosis (IPF), are severe, irreversible conditions with poor prognoses and limited treatment options.
- Lung fibrosis (LF) is a significant cause of mortality, particularly in industrialized nations and with increasing age.
- Sirtuins (SIRTs), a family of NAD+-dependent enzymes, are increasingly recognized for their role in regulating disease progression.
Purpose of the Study:
- To provide a comprehensive update on the regulatory roles of sirtuins in lung fibrosis (LF).
- To discuss the potential of modulating sirtuin expression as a therapeutic strategy for LF.
- To guide the development of novel, safe, and cost-effective sirtuin-based drugs.
Main Methods:
- Comprehensive literature review of recent developments in sirtuin research related to lung fibrosis.
- Analysis of the known functions and cellular localization of different sirtuin family members (SIRT1-7).
- Discussion of therapeutic modulation strategies targeting endogenous sirtuin expression.
Main Results:
- Sirtuins play a pivotal role in regulating the progression of lung fibrosis (LF).
- Specific sirtuins (SIRT1, SIRT3, SIRT6, SIRT7) are identified as cytoprotective and implicated in fibrotic diseases.
- The functional roles of other sirtuins in pulmonary pathologies require further investigation.
Conclusions:
- Sirtuins represent promising therapeutic targets for combating lung fibrosis (LF).
- Modulating sirtuin expression via synthetic or plant-derived compounds could lead to new anti-fibrotic drugs.
- Further research into sirtuin-based therapies holds potential for developing cheap, non-toxic treatments for LF and IPF.

