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Enhanced AAV transduction across preclinical CNS models: A comparative study in human brain organoids with cross-species evaluations.


ABSTRACT: Viral vectors based on recombinant adeno-associated virus (rAAV) have become the most widely used system for therapeutic gene delivery in the central nervous system (CNS). Despite clinical safety and efficacy in neurological applications, a barrier to adoption of the current generation of vectors lies in their limited efficiency, resulting in limited transduction of CNS target cells. To address this limitation, researchers have bioengineered fit-for-purpose AAVs with improved CNS tropism and tissue penetration. While the preclinical assessment of these novel AAVs is primarily conducted in animal models, human induced pluripotent stem cell (hiPSC)-derived organoids offer a unique opportunity to functionally evaluate novel AAV variants in a human context. In this study, we performed a comprehensive and unbiased evaluation of a large number of wild-type and bioengineered AAV capsids for their transduction efficiency in hiPSC-derived brain organoids. We demonstrate that efficient AAV transduction observed in organoids was recapitulated in vivo in both mouse and non-human primate models after cerebrospinal fluid (CSF) delivery. In summary, our study showcases the use of brain organoid systems for the pre-screening of novel AAV vectors. Additionally, we report data for novel AAV variants that exhibit improved CNS transduction efficiency when delivered via the CSF in in vivo preclinical models.

SUBMITTER: Drouyer M 

PROVIDER: S-EPMC11301180 | biostudies-literature | 2024 Sep

REPOSITORIES: biostudies-literature

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Enhanced AAV transduction across preclinical CNS models: A comparative study in human brain organoids with cross-species evaluations.

Drouyer Matthieu M   Merjane Jessica J   Nedelkoska Teodora T   Westhaus Adrian A   Scott Suzanne S   Lee Scott S   Burke Peter G R PGR   McMullan Simon S   Lanciego Jose L JL   Vicente Ana F AF   Bugallo Ricardo R   Unzu Carmen C   González-Aseguinolaza Gloria G   Gonzalez-Cordero Anai A   Lisowski Leszek L  

Molecular therapy. Nucleic acids 20240628 3


Viral vectors based on recombinant adeno-associated virus (rAAV) have become the most widely used system for therapeutic gene delivery in the central nervous system (CNS). Despite clinical safety and efficacy in neurological applications, a barrier to adoption of the current generation of vectors lies in their limited efficiency, resulting in limited transduction of CNS target cells. To address this limitation, researchers have bioengineered fit-for-purpose AAVs with improved CNS tropism and tis  ...[more]

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