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Updated: Jul 16, 2026

Post-Myocardial Infarction Heart Failure in Closed-chest Coronary Occlusion/Reperfusion Model in Göttingen Minipigs and Landrace Pigs
Published on: April 17, 2021
Suppression of Post-Ischemic Cardiac Remodelling and Inflammatory Response by a Novel Sphingolipid Modifier, CIN038
Bing H Wang1,2,3,4, Feby Savira3,4,5, Xin Xiong3,4
1Heart Failure Research Group, Baker Heart and Diabetes Institute, Melbourne 3004, Australia.
Insights
Dihydroceramide desaturase 1 (DES1) inhibition with CIN038 reduced cardiac remodeling and infarct size after ischemia-reperfusion injury in mice. This highlights DES1 as a potential therapeutic target for myocardial infarction (MI) and heart failure (HF).
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Pharmacology
Background:
- Elevated sphingolipids, like ceramide (Cer), in myocardial infarction (MI) correlate with heart failure (HF) progression.
- Dihydroceramide desaturase 1 (DES1) is key in ceramide synthesis; its inhibition shows promise in other diseases but its cardiac role is unknown.
Purpose of the Study:
- To investigate if inhibiting DES1 with CIN038 can reduce cardiac remodeling following ischemia-reperfusion (I/R) injury.
Main Methods:
- Mice underwent I/R or sham surgery, treated with vehicle or CIN038 (50 mg/kg/day) for 28 days.
- Assessed cardiac function, molecular changes (gene/protein expression), and lipid profiles.
- Utilized lipidomics for detailed analysis of circulating and hepatic lipids.
Main Results:
- CIN038 significantly reduced infarct size and cardiac myocyte hypertrophy compared to vehicle.
- Suppressed profibrotic markers (Col1a1, Col3a1, Tgfb, α-SMA, TGFβ1) and inflammatory signaling (ERK, NFkB, Il-6-STAT).
- Observed alterations in specific circulating and hepatic lipids, indicating metabolic modulation, but no change in cardiac function.
Conclusions:
- CIN038 effectively attenuates post-ischemic cardiac remodeling by inhibiting DES1, reducing inflammation and fibrosis.
- DES1 inhibition emerges as a promising therapeutic strategy for myocardial infarction.
- Further research is needed to understand the lack of functional improvement despite structural benefits.
Abstract:
In patients with myocardial infarction (MI), the level of sphingolipids, such as ceramide (Cer), is elevated and is associated with an increased risk of progression towards heart failure (HF). Dihydroceramide desaturase 1 (DES1) catalyses the conversion of dihydroceramide (dhCer) into Cer in the de novo sphingolipid pathway. While pharmacological inhibition of DES1 has shown therapeutic benefits in metabolic disease and cancer models, its role in cardiac remodelling remains unclear. This study aimed to determine whether pharmacological inhibition of DES1 using the novel compound, CIN038, attenuates cardiac remodelling following ischemia-reperfusion (I/R) injury. Three-month-old male C57Bl/6 mice underwent I/R or sham surgery (n = 8) and were treated with vehicle or CIN038 (50 mg/kg/day, i.p.) for 28 days. Cardiac function, molecular changes, and lipid profiles in circulation and liver were assessed at the endpoint. CIN038 reduced infarct size and cardiac myocyte hypertrophy compared to the I/R + vehicle group. Profibrotic signalling was reduced in the infarcted hearts, as evidenced by reduced expression of Col1a1, Col3a1, and Tgfb mRNA and decreased levels of α-SMA and TGFβ1 protein expression. Inflammatory signalling was attenuated with reduced ERK and NFkB phosphorylation and suppression of Il-6-STAT axis. Despite these structural and molecular improvements, no changes were observed in cardiac function. Lipidomic analysis revealed selective alterations in circulating and hepatic lipid species, including plasmalogen phosphatidylethanolamines and ether-linked triglycerides, suggesting modulation of lipid metabolism. Collectively, these findings indicate that CIN038 attenuates post-ischemic cardiac remodelling by suppressing inflammatory and profibrotic signalling, highlighting DES1 as a potential therapeutic target following MI.
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