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Updated: Jun 30, 2026

Murine Cervical Heart Transplantation Model Using a Modified Cuff Technique
Published on: October 12, 2014
Cardiac hypertrophy after transplantation is associated with persistent expression of tumor necrosis factor-alpha
S J Stetson1, A Perez-Verdia, W Mazur
1Department of Medicine, The DeBakey Heart Center, The Winters Center for Heart Failure Research, Baylor College of Medicine, Houston, Texas, USA.
Insights
Cardiac allograft hypertrophy is primarily driven by persistent intracardiac tumor necrosis factor-alpha (TNF-alpha) expression, not systemic hypertension. This cytokine contributes to significant cardiac remodeling after heart transplantation.
Area of Science:
- Cardiology
- Immunology
- Transplantation Medicine
Background:
- Cardiac allograft hypertrophy mechanisms remain unclear, but rapid progression suggests nonhemodynamic factors.
- Tumor necrosis factor-alpha (TNF-alpha), a cytokine found in cardiac allografts, is known to induce hypertrophy and fibrosis.
- The study investigates the roles of hypertension, histological changes, and myocardial TNF-alpha in post-transplant cardiac hypertrophy.
Purpose of the Study:
- To determine the contribution of systemic hypertension to cardiac allograft hypertrophy.
- To characterize the histological determinants of cardiac hypertrophy post-transplantation.
- To assess the expression of myocardial TNF-alpha following heart transplantation.
Main Methods:
- Compared left ventricular mass gain in heart and lung transplant recipients with similar hypertension rates using 2D echocardiography.
- Analyzed myocardial tissue samples from early post-transplant and 1-year follow-up.
- Quantified collagen content (total, type I, type III) and myocyte size.
Main Results:
- Heart transplant recipients showed a 73% increase in left ventricular mass, versus 7% in lung transplant recipients (P<0.0001).
- Significant increases in total collagen, collagen I, collagen III, and myocyte size were observed over one year (P<0.0001).
- These histological changes correlated with persistent myocardial TNF-alpha expression.
Conclusions:
- Systemic hypertension plays a minimal role in cardiac allograft hypertrophy.
- Persistent intracardiac TNF-alpha expression is implicated as a key factor in cardiac allograft hypertrophy development.
Background:
The mechanisms that contribute to cardiac allograft hypertrophy are not known; however, the rapid progression and severity of hypertrophy suggest that nonhemodynamic factors may play a contributory role. Tumor necrosis factor-alpha (TNF-alpha) is a cytokine produced in cardiac allografts and capable of producing hypertrophy and fibrosis; therefore, we suggest that TNF-alpha may play a contributory role. Accordingly, the aims of our study were to define the role of systemic hypertension in the development of hypertrophy, characterize the histological determinants of hypertrophy, and characterize the expression of myocardial TNF-alpha after heart transplantation.
Methods And Results:
To separate the effect of hypertension from immune injury in the development of cardiac allograft hypertrophy, we measured the gain in left ventricular mass by 2D echocardiography in heart transplant recipients and lung transplant recipients who developed similar rates of systemic hypertension. The gain in left ventricular mass was 73% in heart transplant recipients and 7% in lung transplant recipients (P<0.0001). By comparing myocardial samples obtained during the first week after transplant and at 1 year, we found that there was a significant increase in total collagen content (P<0.0001), collagen I (P<0.0001), collagen III (P<0.0001), and myocyte size (P<0.0001). These changes were associated with persistent myocardial TNF-alpha expression.
Conclusions:
We suggest that the contribution of hypertension to cardiac allograft hypertrophy is minimal and that persistent intracardiac expression of TNF-alpha may contribute to the development of cardiac allograft hypertrophy.
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