Key result
Novel AAV-B1 improves CNS and muscle gene delivery vs AAV9 in mice and cats.
Why the study?
Achieving global gene delivery to the CNS is key for developing effective therapies for neurological disorders, but improved AAV vectors are needed.
The novel AAV-B1 capsid demonstrates superior gene delivery efficiency to the CNS and peripheral tissues compared to AAV9, representing a promising platform for gene therapy.
AAV-B1 may advance vector selection for neuromuscular gene therapy; leaves open efficacy, safety, and human translation studies.
Adeno-associated viral (AAV) vectors have shown promise as a platform for gene therapy of neurological disorders. Achieving global gene delivery to the central nervous system (CNS) is key for development of effective therapies for many of these diseases. Here we report the isolation of a novel CNS tropic AAV capsid, AAV-B1, after a single round of in vivo selection from an AAV capsid library. Systemic injection of AAV-B1 vector in adult mice and cat resulted in widespread gene transfer throughout the CNS with transduction of multiple neuronal subpopulations. In addition, AAV-B1 transduces muscle, β-cells, pulmonary alveoli, and retinal vasculature at high efficiency. This vector is more efficient than AAV9 for gene delivery to mouse brain, spinal cord, muscle, pancreas, and lung. Together with reduced sensitivity to neutralization by antibodies in pooled human sera, the broad transduction profile of AAV-B1 represents an important improvement over AAV9 for CNS gene therapy.
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Choudhury et al. (2016) studied Neurological disorders. AAV-B1 vector vs. AAV9 was evaluated on Gene delivery efficiency to CNS and other tissues. Systemic injection of the novel AAV-B1 vector in adult mice and cats resulted in more efficient gene delivery to the central nervous system and muscle compared to AAV9.
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