Gene delivery to skeletal muscle results in sustained expression and systemic delivery of a therapeutic protein
- 26 November 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (24) , 14082-14087
- https://doi.org/10.1073/pnas.93.24.14082
Abstract
Somatic gene therapy has been proposed as a means to achieve systemic delivery of therapeutic proteins. However, there is limited evidence that current methods of gene delivery can practically achieve this goal. In this study, we demonstrate that, following a single intramuscular administration of a recombinant adeno-associated virus (rAAV) vector containing the β-galactosidase (AAV-lacZ) gene into adult BALB/c mice, protein expression was detected in myofibers for at least 32 weeks. A single intramuscular administration of an AAV vector containing a gene for human erythropoietin (AAV-Epo) into mice resulted in dose-dependent secretion of erythropoietin and corresponding increases in red blood cell production that persisted for up to 40 weeks. Primary human myotubes transduced in vitro with the AAV-Epo vector also showed dose-dependent production of Epo. These results demonstrate that rAAV vectors are able to transduce skeletal muscle and are capable of achieving sustained expression and systemic delivery of a therapeutic protein following a single intramuscular administration. Gene therapy using AAV vectors may provide a practical strategy for the treatment of inherited and acquired protein deficiencies.Keywords
This publication has 59 references indexed in Scilit:
- Long-Term Secretion of Therapeutic Proteins from Genetically Modified Skeletal MusclesHuman Gene Therapy, 1996
- Long-term gene expression and phenotypic correction using adeno-associated virus vectors in the mammalian brainNature Genetics, 1994
- Inactivation of E2a in recombinant adenoviruses improves the prospect for gene therapy in cystic fibrosisNature Genetics, 1994
- Plasmid DNA Is Superior to Viral Vectors for Direct Gene Transfer into Adult Mouse Skeletal MuscleHuman Gene Therapy, 1993
- Myoblasts in pattern formation and gene therapyTrends in Genetics, 1993
- Direct Gene Transfer into Skeletal MuscleIn Vivo: Factors Affecting Efficiency of Transfer and Stability of ExpressionHuman Gene Therapy, 1993
- Widespread long-term gene transfer to mouse skeletal muscles and heart.Journal of Clinical Investigation, 1992
- Long-Term Improvement of Hypercholesterolemia After Ex Vivo Gene Therapy in LDLR-Deficient RabbitsScience, 1991
- Direct Gene Transfer into Mouse Muscle in VivoScience, 1990
- Characteristics of a Human Cell Line Transformed by DNA from Human Adenovirus Type 5Journal of General Virology, 1977