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Published on: July 21, 2022
Calpain inhibition protects against virus-induced apoptotic myocardial injury
R L DeBiasi1, C L Edelstein, B Sherry
1Departments of Pediatric Infectious Diseases, University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.
Abstract:
Viral myocarditis is an important cause of human morbidity and mortality for which reliable and effective therapy is lacking. Using reovirus strain 8B infection of neonatal mice, a well-characterized experimental model of direct virus-induced myocarditis, we now demonstrate that myocardial injury results from apoptosis. Proteases play a critical role as effectors of apoptosis. The activity of the cysteine protease calpain increases in reovirus-infected myocardiocytes and can be inhibited by the dipeptide alpha-ketoamide calpain inhibitor Z-Leu-aminobutyric acid-CONH(CH(2))3-morpholine (CX295). Treatment of reovirus-infected neonatal mice with CX295 protects them against reovirus myocarditis as documented by (i) a dramatic reduction in histopathologic evidence of myocardial injury, (ii) complete inhibition of apoptotic myocardial cell death as identified by terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick end labeling, (iii) a reduction in serum creatine phosphokinase, and (iv) improved weight gain. These findings are the first evidence for the importance of a calpain-associated pathway of apoptotic cell death in viral disease. Inhibition of apoptotic signaling pathways may be an effective strategy for the treatment of viral disease in general and viral myocarditis in particular.
Insights
Viral myocarditis causes significant illness and death. Inhibiting the protease calpain with CX295 effectively protected mice from this condition by preventing heart cell apoptosis.
Area of Science:
- Cardiology
- Virology
- Molecular Biology
Background:
- Viral myocarditis is a major cause of morbidity and mortality.
- Current therapies for viral myocarditis are limited.
- Myocardial injury in viral myocarditis is often linked to programmed cell death.
Purpose of the Study:
- To investigate the role of apoptosis in reovirus-induced myocarditis.
- To evaluate the therapeutic potential of inhibiting calpain activity.
Main Methods:
- Utilized a neonatal mouse model infected with reovirus strain 8B.
- Administered the calpain inhibitor CX295 to infected mice.
- Assessed myocardial injury through histopathology, apoptosis detection (TUNL), serum creatine phosphokinase levels, and weight gain.
Main Results:
- Reovirus infection led to increased calpain activity in heart cells.
- CX295 treatment significantly reduced histopathological damage in the myocardium.
- Apoptotic cell death in the heart was completely inhibited by CX295.
- CX295 treatment improved weight gain and reduced serum creatine phosphokinase levels.
Conclusions:
- Apoptosis, mediated by calpain, is a key mechanism in reovirus-induced myocarditis.
- Inhibiting calpain with CX295 offers a protective effect against viral myocarditis.
- Targeting apoptotic pathways presents a promising therapeutic strategy for viral diseases.
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