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Updated: Aug 9, 2026

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Published on: April 21, 2010
Effects of growth hormone on cardiac dysfunction and gene expression in genetic murine dilated cardiomyopathy
M Hongo1, T Ryoke, J Schoenfeld
1The First Department of Internal Medicine, Shinshu University School of Medicine, Matsumoto, Japan.
Insights
Growth hormone (GH) treatment improved cardiac function in mice with muscle LIM protein (MLP) gene disruption, a model for dilated cardiomyopathy. This study explored GH
Area of Science:
- Cardiology
- Molecular Biology
- Genetics
Background:
- Beneficial cardiac effects of growth hormone (GH) are known in heart failure.
- Studies on GH treatment in cardiomyopathic (CM) mouse hearts are limited.
- Muscle LIM protein (MLP) null mice (MLP-/-) exhibit dilated cardiomyopathy.
Purpose of the Study:
- To assess the natural history of MLP-/- mice.
- To investigate the effects of recombinant human (rh) GH on cardiac function and gene expression in MLP-/- mice.
- To evaluate MLP-/- mice as a model for heart failure research.
Main Methods:
- Echocardiography and catheter-tip micromanometry were used to assess cardiac function.
- MLP-/- mice were randomized to receive vehicle (controls) or rhGH.
- Gene expression analysis was performed on left ventricular (LV) tissue.
Main Results:
- MLP-/- mice showed progressive LV dilation and decreased function over time.
- rhGH treatment improved LV % fractional shortening, LV wall thickness, LV dP/dtmax, and LV relaxation (tau).
- rhGH treatment reduced elevated LV mRNA expression of ANP and BNP.
Conclusions:
- Short-term rhGH treatment improved cardiac function in a chronic heart failure model.
- The MLP null cardiomyopathic mouse is a valuable model for studying heart failure signaling and therapeutic interventions.
- GH influences the expression of genes involved in the embryonic gene program in the failing heart.
Abstract:
Beneficial cardiac effects of growth hormone (GH) have been shown in heart failure in several settings, but studies are lacking on this and other forms of treatment in the cardiomyopathic (CM) mouse heart. In mice with dilated cardiomyopathy due to disruption of the muscle LIM protein (MLP) gene [MLP null mice (MLP-/-)], natural history was first assessed by an initial echocardiogram at 8 weeks and a later follow-up study (n = 31). In most mice, left ventricular (LV) dilation increased and/or function decreased by 5 months, and 3 of 12 mice followed for 9 months died. At the end of follow-up, 22 MLP-/- mice (average age 10.2 months) had both LV dilation and reduced LV function and were selected for studies of GH effects on cardiac function and gene expression; mice were randomized to vehicle (controls) or recombinant human (rh) GH and restudied after 2 weeks. In the GH-treated group compared to the control group, LV % fractional shortening and LV wall thickness (echocardiography) were increased, the LV dP/dtmax (catheter-tip micromanometry) was enhanced, and LV relaxation (tau) improved; however, the LV weight was not significantly increased. The LV expression of many genes was altered in MLP-/- mice, and several were influenced by GH. Thus, short-term RhGH treatment improved LV function in a setting of chronic cardiac deterioration and significantly reduced elevated LV mRNA expression of some (ANP, BNP) but not other members of the embryonic gene program. The MLP null cardiomyopathic mouse can be useful for exploring altered signaling and therapeutic interventions in heart failure.
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