Related Experiment Video
Updated: Oct 4, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
BRD4770 functions as a novel ferroptosis inhibitor to protect against aortic dissection
1Division of Cardiothoracic and Vascular Surgery, Sino-Swiss Heart-Lung Transplantation Institute, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.
Abstract:
Smooth muscle cell (SMC) loss is the characteristic feature in the pathogenesis of aortic dissection (AD), and ferroptosis is a novel iron-dependent regulated cell death driven by the excessive lipid peroxidation accumulation. However, whether targeting ferroptosis is an effective approach for SMC loss and AD treatment remains unclear. Here, we found that the iron level, ferroptosis-related molecules TFR, HOMX1, ferritin and the lipid peroxidation product 4-hydroxynonenal were increased in the aorta of AD. Then, we screened several inhibitors of histone methyltransferases and found that BRD4770 had a protective effect on cystine deprivation-, imidazole ketone erastin- or RSL3-induced ferroptosis of SMCs. The classic ferroptosis pathways, System Xc--GPX4, FSP1-CoQ10 and GCH1-BH4 pathways which were inhibited by ferroptosis inducers, were re-activated by BRD4770 via inhibiting mono-, di- and tri- methylated histone H3 at lysine 9 (H3K9me1/2/3). RNA-sequencing analysis revealed that there was a positive feedback regulation between ferroptosis and inflammatory response, and BRD4770 can reverse the effects of inflammation activation on ferroptosis. More importantly, treatment with BRD4770 attenuated aortic dilation and decreased morbidity and mortality in a β-Aminopropionitrile monofumarate-induced mouse AD model via inhibiting the inflammatory response, lipid peroxidation and ferroptosis. Taken together, our findings demonstrate that ferroptosis is a novel and critical pathological mechanism that is involved in SMC loss and AD development. BRD4770 is a novel ferroptosis inhibitor and has equivalent protective effect to Ferrostatin-1 at the optimal concentration. Translating insights into the anti-ferroptosis effects of BRD4770 may reveal a potential therapeutic approach for targeting SMC ferroptosis in AD.
Insights
Smooth muscle cell loss in aortic dissection involves ferroptosis. BRD4770, a ferroptosis inhibitor, protects cells and reduces aortic dissection in mice by targeting lipid peroxidation and inflammation.
Area of Science:
- Cardiovascular Biology
- Cell Death Mechanisms
- Molecular Pathology
Background:
- Aortic dissection (AD) is characterized by smooth muscle cell (SMC) loss.
- Ferroptosis, a form of regulated cell death driven by lipid peroxidation, is implicated but its role in AD is unclear.
Purpose of the Study:
- To investigate the role of ferroptosis in SMC loss during AD pathogenesis.
- To evaluate BRD4770, a novel ferroptosis inhibitor, as a potential therapeutic agent for AD.
Main Methods:
- Analysis of ferroptosis markers in AD aorta samples.
- Screening of histone methyltransferase inhibitors, identifying BRD4770.
- Investigating BRD4770's mechanism via ferroptosis pathways (System Xc⁻-GPX4, FSP1-CoQ₁₀, GCH1-BH₄) and histone methylation (H3K9me1/2/3).
- RNA-sequencing to assess ferroptosis-inflammation crosstalk.
- In vivo studies using a mouse AD model treated with BRD4770.
Main Results:
- Elevated iron levels and ferroptosis markers (TFR, HOMX1, ferritin, 4-hydroxynonenal) were observed in AD aortas.
- BRD4770 protected SMCs from ferroptosis and reactivated key ferroptosis pathways by inhibiting H3K9 methylation.
- BRD4770 reversed inflammation-induced ferroptosis and attenuated aortic dilation, morbidity, and mortality in a mouse AD model.
Conclusions:
- Ferroptosis is a critical mechanism in SMC loss and AD development.
- BRD4770 demonstrates significant therapeutic potential as a ferroptosis inhibitor for AD treatment, comparable to Ferrostatin-1.

