Encapsulation of AAVs into Protein Vault Nanoparticles as a Novel Solution to Gene Therapy’s Neutralizing Antibody Problem
Abstract
Abstract Although adeno-associated virus (AAV) has enjoyed enormous success as a delivery modality for gene therapy, it suffers from high prevalence of preexisting neutralizing antibodies in human populations, limiting who can receive potentially life-saving treatments. As a novel solution to this issue, we employed SpyTag-SpyCatcher molecular glue technology to facilitate packaging of AAVs inside of recombinant protein vault nanoparticles. Vaults are endogenous particles produced by mammalian cells. We therefore hypothesized that they may shield packaged molecules from neutralizing antibodies. Vaults have previously been utilized to deliver drugs and proteins into cells, but our study represents the first time anyone has packaged an entire virus inside of a vault. We showed that our vaultAAV delivery vehicle transduces cells in the presence of anti-AAV neutralizing serum. VaultAAV is positioned as a new gene therapy delivery platform with potential to overcome the neutralizing antibody problem, expanding the scope of AAV treatments.
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Authors: Logan Thrasher Collins, Wandy L. Beatty, Buhle Moyo, Michele Alves‐Bezerra, Ayrea Hurley, Qing Lou, Z. Hong Zhou, William R. Lagor, Gang Bao, Selvarangan Ponnazhagan, Randall McNally, Leonard H. Rome, David T. Curiel
Institutions: University of California, Los Angeles, University of Alabama at Birmingham, Washington University in St. Louis, Rice University, Baylor College of Medicine, California NanoSystems Institute