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Comparative analysis of DNA nanoparticles and AAVs for ocular gene delivery.


ABSTRACT: Gene therapy is a critical tool for the treatment of monogenic retinal diseases. However, the limited vector capacity of the current benchmark delivery strategy, adeno-associated virus (AAV), makes development of larger capacity alternatives, such as compacted DNA nanoparticles (NPs), critical. Here we conduct a side-by-side comparison of self-complementary AAV and CK30PEG NPs using matched ITR plasmids. We report that although AAVs are more efficient per vector genome (vg) than NPs, NPs can drive gene expression on a comparable scale and longevity to AAV. We show that subretinally injected NPs do not leave the eye while some of the AAV-injected animals exhibited vector DNA and GFP expression in the visual pathways of the brain from PI-60 onward. As a result, these NPs have the potential to become a successful alternative for ocular gene therapy, especially for the multitude of genes too large for AAV vectors.

SUBMITTER: Han Z 

PROVIDER: S-EPMC3525534 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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Comparative analysis of DNA nanoparticles and AAVs for ocular gene delivery.

Han Zongchao Z   Han Zongchao Z   Conley Shannon M SM   Makkia Rasha R   Guo Junjing J   Cooper Mark J MJ   Naash Muna I MI  

PloS one 20121218 12


Gene therapy is a critical tool for the treatment of monogenic retinal diseases. However, the limited vector capacity of the current benchmark delivery strategy, adeno-associated virus (AAV), makes development of larger capacity alternatives, such as compacted DNA nanoparticles (NPs), critical. Here we conduct a side-by-side comparison of self-complementary AAV and CK30PEG NPs using matched ITR plasmids. We report that although AAVs are more efficient per vector genome (vg) than NPs, NPs can dri  ...[more]

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