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High-Throughput In Vitro, Ex Vivo, and In Vivo Screen of Adeno-Associated Virus Vectors Based on Physical and Functional Transduction

Authors :
Kenneth Hsu
Arkadiusz Rybicki
Magdalena Kwiatek
Anai Gonzalez-Cordero
Razvan F Albu
Marti Cabanes-Creus
Erhua Zhu
Predrag Kalajdzic
Matthieu Drouyer
Maddison Knight
Adrian J. Thrasher
Grober Baltazar
Ian E. Alexander
Boaz H. Ng
Adrian Westhaus
Renina Gale Navarro
Leszek Lisowski
Giorgia Santilli
Belinda Kramer
Wendy A. Gold
Source :
Human Gene Therapy. 31:575-589
Publication Year :
2020
Publisher :
Mary Ann Liebert Inc, 2020.

Abstract

Adeno-associated virus (AAV) vectors are quickly becoming the vectors of choice for therapeutic gene delivery. To date, hundreds of natural isolates and bioengineered variants have been reported. While factors such as high production titer and low immunoreactivity are important to consider, the ability to deliver the genetic payload (physical transduction) and to drive high transgene expression (functional transduction) remains the most important feature when selecting AAV variants for clinical applications. Reporter expression assays are the most commonly used methods for determining vector fitness. However, such approaches are time consuming and become impractical when evaluating a large number of variants. Limited access to primary human tissues or challenging model systems further complicates vector testing. To address this problem, convenient high-throughput methods based on next-generation sequencing (NGS) are being developed. To this end, we built an AAV Testing Kit that allows inherent flexibility in regard to number and type of AAV variants included, and is compatible with in vitro, ex vivo, and in vivo applications. The Testing Kit presented here consists of a mix of 30 known AAVs where each variant encodes a CMV-eGFP cassette and a unique barcode in the 3'-untranslated region of the eGFP gene, allowing NGS-barcode analysis at both the DNA and RNA/cDNA levels. To validate the AAV Testing Kit, individually packaged barcoded variants were mixed at an equal ratio and used to transduce cells/tissues of interest. DNA and RNA/cDNA were extracted and subsequently analyzed by NGS to determine the physical/functional transduction efficiencies. We were able to assess the transduction efficiencies of immortalized cells, primary cells, and induced pluripotent stem cells in vitro, as well as in vivo transduction in naive mice and a xenograft liver model. Importantly, while our data validated previously reported transduction characteristics of individual capsids, we also identified novel previously unknown tropisms for some AAV variants.

Details

ISSN :
15577422 and 10430342
Volume :
31
Database :
OpenAIRE
Journal :
Human Gene Therapy
Accession number :
edsair.doi...........c28876d090d13cf4fe23e18459d1aade