Expression of the human atrial myosin light chain 1 (hALC-1) in the cardiac ventricle in vivo as well as in primary cultivated adult cardiomyocytes caused a pronounced positive inotropic effect. Therefore, it is one of the most promising candidate gene to treat congestive heart failure (CHF). In this work, we investigated, whether hALC-1 expression also modifies the energetic state of cardiomyocytes. Primary cultivated neonatal rat hearts cells (NRHC) were infected with adenoviral vectors (Ad vectors) containing a hALC-1 cDNA (AdCMV.hALC-1) or a control Ad vector. Infection efficiency of NRHC reached 100% at 50 multiplicity of infection (MOI). Interestingly and in contrast to primary cultures of liver cells, there were no cytotoxic side eff...
Direct injection of adenovirus (Ad) has been suggested as an efficient method for in vivo gene trans...
Aims: In this paper we tested the hypothesis that different binding affinities of the C-terminus of ...
The adult rodent heart adapts to increased work load by reexpression of its fetal genes, for example...
Background: Adenoviral gene transfer has been shown to be effective in cardiac myocytes in vitro and...
Most patients with hypertrophic cardiomyopathy and congenital heart diseases express the atrial esse...
To treat various cardiac diseases, modification of gene expression for the purpose of increased or d...
Most patients with hypertrophie cardiomyopathy and congenital heart diseases express the atrial esse...
Adeno-associated viruses (AAVs) provide advantages in long-term, cardiac-specific gene expression. H...
It has been shown that the adeno-associated virus (AAV) vector can deliver the VEGF gene efficiently...
cycling and pathogenesis of cardiac hypertrophy using the in vitro siRNA- and the in vivo adeno-ass...
Background/Aims: Cardiovascular diseases (CVD) are the leading causes for human mortality. However, ...
cycling and pathogenesis of cardiac hypertrophy using the in vitro siRNA- and the in vivo adeno-ass...
Cardiac gene transfer is an attractive tool for developing novel heart disease treatments. Adeno-ass...
Cardiac gene transfer is an attractive tool for developing novel heart disease treatments. Adeno-ass...
textabstractBACKGROUND: A decrease in sarcoplasmic reticulum Ca(2+) pump (SERCA2) activity...
Direct injection of adenovirus (Ad) has been suggested as an efficient method for in vivo gene trans...
Aims: In this paper we tested the hypothesis that different binding affinities of the C-terminus of ...
The adult rodent heart adapts to increased work load by reexpression of its fetal genes, for example...
Background: Adenoviral gene transfer has been shown to be effective in cardiac myocytes in vitro and...
Most patients with hypertrophic cardiomyopathy and congenital heart diseases express the atrial esse...
To treat various cardiac diseases, modification of gene expression for the purpose of increased or d...
Most patients with hypertrophie cardiomyopathy and congenital heart diseases express the atrial esse...
Adeno-associated viruses (AAVs) provide advantages in long-term, cardiac-specific gene expression. H...
It has been shown that the adeno-associated virus (AAV) vector can deliver the VEGF gene efficiently...
cycling and pathogenesis of cardiac hypertrophy using the in vitro siRNA- and the in vivo adeno-ass...
Background/Aims: Cardiovascular diseases (CVD) are the leading causes for human mortality. However, ...
cycling and pathogenesis of cardiac hypertrophy using the in vitro siRNA- and the in vivo adeno-ass...
Cardiac gene transfer is an attractive tool for developing novel heart disease treatments. Adeno-ass...
Cardiac gene transfer is an attractive tool for developing novel heart disease treatments. Adeno-ass...
textabstractBACKGROUND: A decrease in sarcoplasmic reticulum Ca(2+) pump (SERCA2) activity...
Direct injection of adenovirus (Ad) has been suggested as an efficient method for in vivo gene trans...
Aims: In this paper we tested the hypothesis that different binding affinities of the C-terminus of ...
The adult rodent heart adapts to increased work load by reexpression of its fetal genes, for example...