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Genetic editing of dysfunctional myocardium
Roger J. Hajjar
, Fawzia Huq
, Takashi Matsui
, Anthony Rosenzweig
Research output
:
Contribution to journal
›
Review article
›
peer-review
3
Scopus citations
Overview
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Keyphrases
Pharmacologic
100%
Relative Contribution
100%
Molecular Targets
100%
Molecular Pathogenesis
100%
Gene Therapy
100%
Gene Transfer
100%
Cardiomyocytes
100%
Cardiac Dysfunction
100%
Myocardium
100%
Delivery System
100%
Further Development
100%
In Vivo Applications
100%
Anti-apoptotic
100%
Rodent Models
100%
Genome Editing
100%
Clinical Grade
100%
Large Animal Model
100%
Substantial Evidence
100%
Cardiac Gene Delivery
100%
Vector System
100%
Cardiomyocyte Function
100%
Unrealistic Optimism
100%
Timing Strategies
100%
Calcium Transport
100%
Cardiomyocyte Survival
100%
Therapeutic Interventions
100%
Vector Technology
100%
Medicine and Dentistry
Myocardium
100%
Gene Therapy
100%
Cardiac Muscle Cell
100%
Genetics
100%
Molecular Pathology
50%
Antiapoptotic
50%
Calcium Transport
50%
Translating (Language)
50%
Gene Targeting
50%
Gene Transfer
50%
Pathogenesis
50%
Biochemistry, Genetics and Molecular Biology
Animal Model
100%
Cardiac Muscle Cell
100%
Gene Therapy
100%
Genome Editing
100%
Genetics
50%
Calcium Transport
50%
Translating (Language)
50%
Gene Targeting
50%
Pharmacology, Toxicology and Pharmaceutical Science
Gene Delivery
100%
Antiapoptotic
50%
Molecular Target
50%
Molecular Pathology
50%
Pathogenesis
50%