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Targeting BRD4 to reverse organ fibrosis: Epigenetic regulation, cellular plasticity, and therapeutic potential.

Nisar A, Khan S, Li W, Zhang X, He Y.

Pharmacology & therapeutics · 2026

Abstract

Organ fibrosis is a major cause of organ failure and mortality, yet effective disease-reversing therapeutics remain limited. Increasing evidence identifies BRD4, a BET family epigenetic reader, as a central regulator of fibrotic progression across organs. BRD4 integrates upstream injury signals, including TGFβ, NF-κB, oxidative stress, and mechanotransduction, to sustain transcription of profibrotic and pro-inflammatory genes, promote myofibroblast activation, and reinforce pathological cellular plasticity. Across multiple organs and tissues, BRD4 contributes to extracellular matrix deposition, epithelial/endothelial-to-mesenchymal transition, inflammatory amplification, and fibrogenic cell-state maintenance. Preclinical studies show that pharmacological inhibition of BRD4 can attenuate or even reverse fibrosis across multiple organ systems. Emerging modalities, including BRD4 PROTACs, molecular glues, tissue-targeted degraders, microRNA-based modulation, and epigenome editing, further broaden the therapeutic potential of BRD4-directed strategies. Collectively, BRD4 represents a convergence node for chronic injury responses and a promising anti-fibrotic target. A deeper understanding of its context-specific functions, biomarker-guided targeting, and delivery strategies will be essential for translating BRD4-targeted interventions into effective therapies for fibrotic diseases.

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Provenance

Source
Europe PMC
DOI
10.1016/j.pharmthera.2026.109055
Canonical
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Fetched
2026-07-02 MST

Cite this

APA
A, N., S, K., W, L., X, Z., &amp; Y., H. (2026). Targeting BRD4 to reverse organ fibrosis: Epigenetic regulation, cellular plasticity, and therapeutic potential. <em>Pharmacology & therapeutics</em>. https://doi.org/10.1016/j.pharmthera.2026.109055
Vancouver
A N, S K, W L, X Z, Y. H. Targeting BRD4 to reverse organ fibrosis: Epigenetic regulation, cellular plasticity, and therapeutic potential. Pharmacology & therapeutics. 2026. doi:10.1016/j.pharmthera.2026.109055.
BibTeX
@article{nisar2026Target, title = {Targeting BRD4 to reverse organ fibrosis: Epigenetic regulation, cellular plasticity, and therapeutic potential.}, author = {Nisar A and Khan S and Li W and Zhang X and He Y.}, journal = {Pharmacology & therapeutics}, year = {2026}, doi = {10.1016/j.pharmthera.2026.109055}, }

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