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Updated: Jun 1, 2026

Improved Rodent Model of Myocardial Ischemia and Reperfusion Injury
Published on: March 7, 2022
Puma deletion delays cardiac dysfunction in murine heart failure models through attenuation of apoptosis
Adel Mandl1, Ly Huong Pham, Kalman Toth
1Boston Biomedical Research Institute, 64 Grove St, Watertown, MA 02472, USA.
Background:
Puma (p53-upregulated modulator of apoptosis) is a proapoptotic Bcl-2 family protein that serves as a general sensor in response to pathological apoptotic stimuli. In previous work, we demonstrated that puma ablation protects the heart from reperfusion injury in a Langendorff setting. Consistent with this, downregulation of Puma in isolated cardiac myocytes prevented apoptosis induced by different proapoptotic agents. Here, we extended our research to investigate the role of Puma, a downstream mediator of p53, in the development of heart failure using Puma(-/-) mice.
Methods And Results:
Mice underwent transverse aortic constriction, and the characteristics of cardiac remodeling were analyzed by echocardiography, histology, and gene expression at multiple time points after surgery. Four weeks after the operation, puma deletion attenuated pressure overload-induced apoptosis and fibrosis; however, it did not affect hypertrophy and angiogenesis and maintained functional performance (fractional shortening, 39% versus 25.2% in Puma(-/-) versus WT mice, respectively). Even at 12 weeks after transverse aortic constriction, Puma(-/-) mice displayed only slightly reduced contractility. In addition, transverse aortic constriction induced puma expression in a partially p53-dependent manner. To corroborate these findings, we studied another heart failure model in which heart-specific mdm4 deletion leads to p53 activation and dilated cardiomyopathy. In these mice, Puma was upregulated and its deletion rescued the cardiomyopathy phenotype.
Conclusions:
Our data indicate that Puma might be a critical component of the apoptotic signaling pathways that contribute to ventricular remodeling and heart failure. Therefore, Puma inactivation may serve as a preferential target to prevent heart failure induced by cellular stress.
Insights
Puma (p53-upregulated modulator of apoptosis) deficiency protects the heart from pressure overload and p53-mediated heart failure by reducing apoptosis and fibrosis. Inactivating Puma may prevent stress-induced heart failure.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Apoptosis Research
Background:
- Puma (p53-upregulated modulator of apoptosis) is a proapoptotic protein.
- Puma ablation protects the heart from reperfusion injury.
- Puma downregulation prevents apoptosis in cardiac myocytes.
Purpose of the Study:
- Investigate the role of Puma in heart failure development.
- Assess Puma's role as a downstream mediator of p53.
- Evaluate Puma inactivation as a therapeutic strategy.
Main Methods:
- Utilized Puma(-/-) mice and transverse aortic constriction (TAC) model.
- Analyzed cardiac remodeling via echocardiography, histology, and gene expression.
- Studied a secondary heart failure model with p53 activation.
Main Results:
- Puma deletion attenuated pressure overload-induced apoptosis and fibrosis in TAC mice.
- Puma deficiency maintained cardiac function and contractility.
- Puma deletion rescued cardiomyopathy in a p53-activation model.
Conclusions:
- Puma is a critical component in apoptotic signaling during ventricular remodeling and heart failure.
- Puma inactivation is a potential therapeutic target for stress-induced heart failure.

