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Updated: May 16, 2026

Gene Transfer for Ischemic Heart Failure in a Preclinical Model
Published on: May 15, 2011
Corin overexpression improves cardiac function, heart failure, and survival in mice with dilated cardiomyopathy
Inna P Gladysheva1, Dong Wang, Rachel A McNamee
1Department of Medicine, University of Tennessee Health Science Center, Coleman, D334, 956 Court Ave, Memphis, TN 38163, USA. glreed@uthsc.edu
Insights
Corin enzyme deficiency worsens heart failure in mice. Overexpressing corin improves cardiac function, reduces fibrosis, and extends survival in dilated cardiomyopathy models, highlighting its therapeutic potential.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Biomarker Research
Background:
- Heart failure, often linked to dilated cardiomyopathy, presents a significant public health challenge.
- Corin, a cardiac enzyme, is a potential biomarker for cardiomyopathy but its function remains unclear.
Purpose of the Study:
- To investigate the functional role of corin in a mouse model of dilated cardiomyopathy.
- To determine if corin expression influences heart failure progression and survival.
Main Methods:
- Utilized a well-characterized mouse model of dilated cardiomyopathy.
- Examined the effects of corin deficiency and overexpression on cardiac structure and function.
- Assessed outcomes including fibrosis, contractile function, heart failure indicators, and mortality.
Main Results:
- Low corin expression in dilated cardiomyopathy mice correlated with heart failure, reduced function, fibrosis, and mortality.
- Corin overexpression in wild-type mice showed no adverse effects.
- In dilated cardiomyopathy mice, corin overexpression reduced fibrosis, improved contractile function, and decreased heart failure markers.
Conclusions:
- Corin plays a crucial role in modulating myocardial fibrosis, cardiac function, and survival in dilated cardiomyopathy.
- Corin overexpression demonstrates therapeutic potential for mitigating heart failure progression and improving outcomes.
Abstract:
Heart failure, caused by dilated cardiomyopathy and other cardiac disorders such as hypertension, is a major public health problem with high morbidity and mortality. Corin, a cardiac enzyme that cleaves natriuretic peptides, is a promising biomarker of cardiomyopathy and heart failure, but its functional role in these processes is not understood. We evaluated the potential effects of corin in mice with a well-characterized model of dilated cardiomyopathy. Mice with dilated cardiomyopathy developed heart failure, reduced contractile function, cardiac fibrosis, and accelerated mortality in the setting of low corin expression. In wild-type mice, transgenic, cardiac-targeted, overexpression of corin enhanced cyclic guanosine monophosphate and blood pressure responses to pro-atrial natriuretic peptide, but did not affect heart size, contractility, body weights, survival, and blood pressure. In mice with dilated cardiomyopathy, corin overexpression significantly reduced the development of myocardial fibrosis (P<0.05). Corin overexpression also enhanced heart contractile function (fractional shortening and ejection fraction; P<0.01) and it significantly reduced heart failure as assessed by lung water (P<0.05) and alveolar congestion (P<0.001). Consistent with these observations, corin overexpression significantly prolonged life in mice with dilated cardiomyopathy (P<0.0001). These results provide the first experimental evidence that corin expression plays a role in cardiomyopathy by modulating myocardial fibrosis, cardiac function, heart failure, and survival.
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