Abstract
Exogenous gene delivery to alter the function of the heart is a potential novel therapeutic strategy for treatment of cardiovascular diseases such as heart failure (HF). Before gene therapy approaches to alter cardiac function can be realized, efficient and reproducible in vivo gene techniques must be established to efficiently transfer transgenes globally to the myocardium. We have been testing the hypothesis that genetic manipulation of the myocardial beta-adrenergic receptor (beta-AR) system, which is impaired in HF, can enhance cardiac function. We have delivered adenoviral transgenes, including the human beta2-AR (Adeno-beta2AR), to the myocardium of rabbits using an intracoronary approach. Catheter-mediated Adeno-beta2AR delivery produced diffuse multichamber myocardial expression, peaking 1 week after gene transfer. A total of 5 x 10(11) viral particles of Adeno-beta2AR reproducibly produced 5- to 10-fold beta-AR overexpression in the heart, which, at 7 and 21 days after delivery, resulted in increased in vivo hemodynamic function compared with control rabbits that received an empty adenovirus. Several physiological parameters, including dP/dtmax as a measure of contractility, were significantly enhanced basally and showed increased responsiveness to the beta-agonist isoproterenol. Our results demonstrate that global myocardial in vivo gene delivery is possible and that genetic manipulation of beta-AR density can result in enhanced cardiac performance. Thus, replacement of lost receptors seen in HF may represent novel inotropic therapy.
MeSH Terms
Adenoviridae/genetics
Adrenergic beta-Agonists/pharmacology,therapeutic use
Animals
Cardiac Catheterization
Cells, Cultured
Coronary Vessels
Gene Expression Regulation
Genetic Therapy
Genetic Vectors/genetics
Heart Failure/drug therapy,therapy
Heart Function Tests
Humans
Injections, Intra-Arterial
Isoproterenol/pharmacology,therapeutic use
Male
Myocardium/metabolism
Rabbits
Receptors, Adrenergic, beta-2/drug effects,genetics,physiology
Signal Transduction
Chemicals
Adrenergic beta-Agonists
Receptors, Adrenergic, beta-2
Isoproterenol
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Maurice J P
Department of Surgery, The Howard Hughes Medical Institute, Duke University Medical Center, Durham, North Carolina 27710, USA.
Hata J A
Shah A S
White D C
McDonald P H
Dolber P C
Wilson K H
Lefkowitz R J
Glower D D
Koch W J
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