AAV2 vector optimization for retinal ganglion cell-targeted delivery of therapeutic genes.
Brahim ChaqourThu T DuongJipeng YueTehui LiuDavid CamachoKimberly E DineJulian Esteve-RuddScott EllisJean BennettKenneth S ShindlerAhmara G RossPublished in: Gene therapy (2024)
Recombinant adeno-associated virus (AAV)-2 has significant potential as a delivery vehicle of therapeutic genes to retinal ganglion cells (RGCs), which are key interventional targets in optic neuropathies. Here we show that when injected intravitreally, AAV2 engineered with a reporter gene driven by cytomegalovirus (CMV) enhancer and chicken β-actin (CBA) promoters, displays ubiquitous and high RGC expression, similar to its synthetic derivative AAV8BP2. A novel AAV2 vector combining the promoter of the human RGC-selective γ-synuclein (hSNCG) gene and woodchuck hepatitis post-transcriptional regulatory element (WPRE) inserted upstream and downstream of a reporter gene, respectively, induces widespread transduction and strong transgene expression in RGCs. High transduction efficiency and selectivity to RGCs is further achieved by incorporating in the vector backbone a leading CMV enhancer and an SV40 intron at the 5' and 3' ends, respectively, of the reporter gene. As a delivery vehicle of hSIRT1, a 2.2-kb therapeutic gene with anti-apoptotic, anti-inflammatory and anti-oxidative stress properties, this recombinant vector displayed improved transduction efficiency, a strong, widespread and selective RGC expression of hSIRT1, and increased RGC survival following optic nerve crush. Thus, AAV2 vector carrying hSNCG promoter with additional regulatory sequences may offer strong potential for enhanced effects of candidate gene therapies targeting RGCs.
Keyphrases
- genome wide identification
- genome wide
- transcription factor
- gene therapy
- copy number
- poor prognosis
- optic nerve
- dna methylation
- oxidative stress
- binding protein
- gene expression
- crispr cas
- induced apoptosis
- genome wide analysis
- optical coherence tomography
- cell death
- stem cells
- cell proliferation
- single cell
- long non coding rna
- ischemia reperfusion injury
- mesenchymal stem cells
- cell therapy
- bone marrow
- human health
- pi k akt
- heat shock