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Gene Transfer for Ischemic Heart Failure in a Preclinical Model
Published on: May 15, 2011
Targeted gene therapy for the treatment of heart failure
Kleopatra Rapti1, Antoine H Chaanine, Roger J Hajjar
1Cardiovascular Research Center, Mount Sinai School of Medicine, New York, New York, USA.
Insights
Cardiac gene therapy offers a promising new treatment for heart failure. Adeno-associated viral vectors provide a safe and effective way to deliver therapeutic genes to the heart.
Area of Science:
- Cardiovascular Medicine
- Molecular Biology
- Biotechnology
Background:
- Chronic heart failure (CHF) is a major cause of death and disability, with current treatments offering limited efficacy.
- Existing therapies like medications and devices improve quality of life but do not provide a cure.
- Understanding CHF mechanisms is crucial for developing novel therapeutic strategies.
Purpose of the Study:
- To explore cardiac gene therapy as a potential treatment for heart failure.
- To identify suitable gene targets, focusing on calcium handling proteins.
- To evaluate adeno-associated viral vectors as safe and effective delivery systems.
Main Methods:
- Review of research on heart failure mechanisms and gene therapy.
- Identification of candidate genes, particularly those involved in calcium cycling.
- Assessment of viral and nonviral vector safety and efficacy for myocardial gene delivery.
Main Results:
- Abnormalities in calcium handling are central to heart failure pathogenesis.
- Nonviral vectors show limited gene expression, while adenoviral vectors pose safety concerns.
- Adeno-associated viral vectors demonstrate sustained, therapeutic gene expression with an acceptable safety profile.
Conclusions:
- Cardiac gene therapy holds significant potential for treating heart failure.
- Adeno-associated viral vectors represent a promising and safe delivery system for myocardial gene therapy.
- Targeting calcium cycling proteins via gene therapy warrants further investigation for CHF treatment.
Abstract:
Chronic heart failure is one of the leading causes of morbidity and mortality in Western countries and is a major financial burden to the health care system. Pharmacologic treatment and implanting devices are the predominant therapeutic approaches. They improve survival and have offered significant improvement in patient quality of life, but they fall short of producing an authentic remedy. Cardiac gene therapy, the introduction of genetic material to the heart, offers great promise in filling this void. In-depth knowledge of the underlying mechanisms of heart failure is, obviously, a prerequisite to achieve this aim. Extensive research in the past decades, supported by numerous methodological breakthroughs, such as transgenic animal model development, has led to a better understanding of the cardiovascular diseases and, inadvertently, to the identification of several candidate genes. Of the genes that can be targeted for gene transfer, calcium cycling proteins are prominent, as abnormalities in calcium handling are key determinants of heart failure. A major impediment, however, has been the development of a safe, yet efficient, delivery system. Nonviral vectors have been used extensively in clinical trials, but they fail to produce significant gene expression. Viral vectors, especially adenoviral, on the other hand, can produce high levels of expression, at the expense of safety. Adeno-associated viral vectors have emerged in recent years as promising myocardial gene delivery vehicles. They can sustain gene expression at a therapeutic level and maintain it over extended periods of time, even for years, and, most important, without a safety risk.
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