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August 15, 2001Journal of Virology85 citationsOpen Access

Enhancement of Muscle Gene Delivery with Pseudotyped Adeno-Associated Virus Type 5 Correlates with Myoblast Differentiation

DDDongsheng DuanZYZiying YanYYYongping Yue

Structured PICO

Does pseudotyped rAAV-2cap5 improve transduction efficiency in mouse muscle cells compared to rAAV-2?

P
Population
Mouse muscle cells (undifferentiated myoblasts and differentiated myocytes) in vitro, skeletal muscle in vivo, and a mouse model of Duchenne's muscular dystrophy
I
Intervention
Pseudotyped rAAV-2cap5 (AAV-2 genomes pseudo-packaged into AAV-5 capsids)
C
Comparator
Recombinant AAV type 2 (rAAV-2)
O
Outcome
Transduction efficiencysurrogate

Pseudotyped rAAV-2cap5 significantly enhances gene delivery to differentiated muscle cells and in a mouse model of Duchenne's muscular dystrophy compared to rAAV-2.

Abstract

Adeno-associated virus (AAV)-based muscle gene therapy has achieved tremendous success in numerous animal models of human diseases. Recent clinical trials with this vector have also demonstrated great promise. However, to achieve therapeutic benefit in patients, large inocula of virus will likely be necessary to establish the required level of transgene expression. For these reasons, efforts aimed at increasing the efficacy of AAV-mediated gene delivery to muscle have the potential for improving the safety and therapeutic benefit in clinical trials. In the present study, we compared the efficiency of gene delivery to mouse muscle cells for recombinant AAV type 2 (rAAV-2) and rAAV-2cap5 (AAV-2 genomes pseudo-packaged into AAV-5 capsids). Despite similar levels of transduction by these two vectors in undifferentiated myoblasts, pseudotyped rAAV-2cap5 demonstrated dramatically enhanced transduction in differentiated myocytes in vitro (>500-fold) and in skeletal muscle in vivo (>200-fold) compared to rAAV-2. Serotype-specific differences in transduction efficiency did not directly correlate with viral binding to muscle cells but rather appeared to involve endocytic or intracellular barriers to infection. Furthermore, application of this pseudotyped virus in a mouse model of Duchenne's muscular dystrophy also demonstrated significantly improved transduction efficiency. These findings should have a significant impact on improving rAAV-mediated gene therapy in muscle.

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Cite This Study

Duan et al. (2001) studied this question.

synapsesocial.com/papers/6a197f7bb71d9c8593891cechttps://doi.org/10.1128/jvi.75.16.7662-7671.2001
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A recombinant plasmid from which an infectious adeno-associated virus genome can be excised in vitro and its use to study viral replication1987 · 448 citations
  2. 2Circular Intermediates of Recombinant Adeno-Associated Virus Have Defined Structural Characteristics Responsible for Long-Term Episomal Persistence in Muscle Tissue1998 · 522 citations
  3. 3Mutational Analysis of the Adeno-Associated Virus Type 2 (AAV2) Capsid Gene and Construction of AAV2 Vectors with Altered Tropism2000 · 394 citations
  4. 4Immune responses to transgene–encoded proteins limit the stability of gene expression after injection of replication–defective adenovirus vectors1996 · 633 citations
  5. 5X chromosome-linked muscular dystrophy (mdx) in the mouse.1984 · 1,769 citations