Peripheral Cellular Immune Responses Induced by Subretinal Adeno-Associated Virus Gene Transfer Can Be Restrained by the Subretinal-Associated Immune Inhibition Mechanism.
Julie VendomèleGaëlle Anne ChauveauDeniz DalkaraAnne GalySylvain FissonPublished in: Human gene therapy (2024)
After more than two decades of basic research and preclinical studies, adeno-associated virus (AAV)-mediated gene transfer has been tested successfully in clinical trials to treat inherited retinal diseases. Despite the eye's immune-privileged status, some patients display inflammatory events requiring the use of corticoids as an adjunct treatment which led us to question the immune consequences of a subretinal AAV administration. We first characterized anti-transgene immune responses induced in the periphery by injecting increasing doses of AAV8 encoding reporter proteins fused with the HY male antigen into the subretinal space of female C57BL/6 and rd10 mice. Transgene expression was monitored over time with bioluminescence imaging, and T cell immune responses in the spleen were analyzed by IFNγ ELISpot and cytokine multiplex assays. Our data show that AAV8 injections cause pro-inflammatory T cell immune response against the transgene product correlated with the transgene expression level at 2.10 9 vg and above. In addition, co-injection of immunodominant peptides from the transgene product, along with AAV8, modulates the immune response at all AAV doses tested. Taken together, our data suggest that injection of AAV8 in the subretinal space induces pro-inflammatory peripheral T cell responses to the transgene product that can be modulated by the subretinal-associated immune inhibition mechanism.
Keyphrases
- immune response
- gene therapy
- dendritic cells
- toll like receptor
- poor prognosis
- clinical trial
- electronic health record
- end stage renal disease
- high throughput
- oxidative stress
- newly diagnosed
- copy number
- ejection fraction
- genome wide
- high glucose
- big data
- machine learning
- gene expression
- metabolic syndrome
- stem cells
- chronic kidney disease
- randomized controlled trial
- cell therapy
- dna methylation
- diabetic retinopathy
- adipose tissue
- endothelial cells
- skeletal muscle
- prognostic factors
- long non coding rna
- mesenchymal stem cells
- mass spectrometry
- type diabetes
- single cell
- platelet rich plasma