We have previously demonstrated that gene therapy can rescue the phenotype and extend lifespan in the delta-sarcoglycan deficient cardiomyopathic hamster. In patients with similar genetic defects, steroids have been largely used to slow down disease progression. Aim of our study was to evaluate the combined effects of steroid treatment and gene therapy on cardiac function. We injected the human delta-sarcoglycan cDNA by adeno-associated virus (AAV) 2/8 by a single intraperitoneal injection into BIO14.6 Syrian hamsters at ten days of age to rescue the phenotype. We then treated the hamsters with deflazacort. Treatment was administered to half of the hamsters that had received the AAV and the other hamsters without AAV, as well as to nor...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5\u27 deletion of the...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5\u27 deletion of the...
AbstractThe δ-sarcoglycan (SG) gene is deleted in hamsters with hereditary cardiomyopathies. Immunol...
We have previously demonstrated that gene therapy can rescue the phenotype and extend lifespan in th...
Background: The BIO14.6 hamster is an excellent animal model for inherited cardiomyopathy, because o...
The BIO14.6 hamster is an excellent animal model for inherited cardiomyopathy, because of its lethal...
Background: The BIO14.6 hamster is an excellent animal model for inherited cardiomyopathy, because o...
The BIO14.6 hamster provides a useful model of hereditary cardiomyopathies and muscular dystrophy. P...
The BIO14.6 hamster provides a useful model of hereditary cardiomyopathies and muscular dystrophy. P...
Background—The success of muscular dystrophy gene therapy requires widespread and stable gene delive...
Background—The success of muscular dystrophy gene therapy requires widespread and stable gene delive...
Background—One of the most important problems in developing in vivo cardiac gene transfer has been l...
Mechanisms underlying dilated cardiomyopathy (DCM) are poorly understood and effective therapy is st...
AbstractThe δ-sarcoglycan (SG) gene is deleted in hamsters with hereditary cardiomyopathies. Immunol...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5' deletion of the 8 ...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5\u27 deletion of the...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5\u27 deletion of the...
AbstractThe δ-sarcoglycan (SG) gene is deleted in hamsters with hereditary cardiomyopathies. Immunol...
We have previously demonstrated that gene therapy can rescue the phenotype and extend lifespan in th...
Background: The BIO14.6 hamster is an excellent animal model for inherited cardiomyopathy, because o...
The BIO14.6 hamster is an excellent animal model for inherited cardiomyopathy, because of its lethal...
Background: The BIO14.6 hamster is an excellent animal model for inherited cardiomyopathy, because o...
The BIO14.6 hamster provides a useful model of hereditary cardiomyopathies and muscular dystrophy. P...
The BIO14.6 hamster provides a useful model of hereditary cardiomyopathies and muscular dystrophy. P...
Background—The success of muscular dystrophy gene therapy requires widespread and stable gene delive...
Background—The success of muscular dystrophy gene therapy requires widespread and stable gene delive...
Background—One of the most important problems in developing in vivo cardiac gene transfer has been l...
Mechanisms underlying dilated cardiomyopathy (DCM) are poorly understood and effective therapy is st...
AbstractThe δ-sarcoglycan (SG) gene is deleted in hamsters with hereditary cardiomyopathies. Immunol...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5' deletion of the 8 ...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5\u27 deletion of the...
The Bio14.6 strain of cardiomyopathy Syrian hamsters (Bio14.6), which have the 5\u27 deletion of the...
AbstractThe δ-sarcoglycan (SG) gene is deleted in hamsters with hereditary cardiomyopathies. Immunol...