Search bioRxiv⌕ Search

Biology subjects

REN, D.

Publications and source records attributed to REN, D..

2 recordsLinked to original sources

AAV-delivered CRISPR-Cas9 elicits persistent retinal immune responses compared with transient responses to RNP

CRISPR-Cas9 is a powerful gene-editing tool with great potential for treating genetic diseases, including inherited retinal disorders. However, its bacterial origin can induce immune responses that may eliminate transduced cells, threatening editing efficiency. A deeper understanding of CRISPR-Cas9 immunogenicity is therefore needed. Previous studies have shown that systemic delivery via Cas9 induces an immune response, but the detailed inflammation and the impact of the vector remain unclear, especially in immune-privileged organs like the eye. In this study, we found that Cas9 delivered to the retina using adeno-associated virus (AAV) induced persistent inflammation, whereas delivery as naked ribonucleoprotein (RNP) complexes resulted in acute inflammation that faded three weeks post-injection. Inflammation was more severe in the rd10 mouse model of inherited retinal degeneration, which exhibits basal inflammation. These findings provide new insights into vector-dependent immune responses to Cas9 in the eye and highlight potential risks associated with its clinical application. TEASERUnderstanding immune reactions to CRISPR-Cas9 and linking these to their delivery methodology increases their safety.

bioengineering↗

Inter-individual variability in immune responses to AAV-mediated ocular gene delivery across species impedes reliable immunomonitoring profile

Adeno-associated viruses (AAVs) have been used in gene therapy, especially for inherited retinal diseases. Despite their effectiveness in gene transduction, immune responses to the AAV capsid and transgene products have been reported, which can compromise both the efficacy and safety of AAV-mediated therapies. The eye is regarded as an immune-privileged organ where immune activity is constitutively suppressed. Here, we highlight that immunomonitoring in an ocular gene transfer reveals variable immune responses, whatever the species (human clinical trial, non-human primates, mice), the site of injection, the cassette, and the dose. We further explored factors contributing to this variability, investigating the correlation among immune parameters in a controlled experimental setting. In a syngeneic murine model after an intraocular injection of AAV, our results highlight an inter-individual variability of immune parameters, emphasizing the importance of considering inherent variability among individuals while designing personalized therapies.

immunology↗