InsightRP2
What distinguishes the consortium is its cohesive structure; it functions not as a collection of isolated, parallel research lines, but as a tightly woven framework that actively and systematically links the various research areas. To achieve this, we bring together highly motivated experts in ophthalmology, human genetics, data science, cell biology and gene therapy. InsightRP2 enables us to feed clinical observations into mechanistic studies, to use bioinformatics approaches for variant interpretation and experimental design, and to translate (patho)physiological findings into therapeutic strategies.
Digital ophthalmology
Digital ophthalmology
Using custom-developed AI algorithms, we analyse retinal imaging data including fundus images and OCT scans from patients with RP2-associated RP, detecting and decoding even subtle structural changes in the retina. Through this approach, we aim to describe disease progression based on objective morphologic criteria and to enhance clinical diagnostics, progression monitoring and assessment of treatment efficacy.
Variant scanning
Variant scanning
By means of advanced digital high-throughput technologies and experimental functional assays, we systematically identify all theoretically possible variants in the RP2 gene and investigate their functional implications. This allows us to evaluate variants of uncertain significance in a more differentiated manner and to make them amenable to molecular interpretation.
Mechanistic insights
Mechanistic insights
To further characterise the role of RP2, we introduce patient-relevant mutations into induced pluripotent stem cells and differentiate them into retinal tissues and organoids. Using HighEnd multi-omics technologies and integrative data analysis, we study cell type-specific
alterations and identify potential therapeutic targets.
Drug discovery
Drug discovery
Based on elucidated signalling pathways and cellular mechanisms, we systematically and specifically search for compounds that can stabilise or correct dysregulated processes. Our goal is to identify candidate substances that can be further evaluated in preclinical models and, in the longer term, in clinical studies.
Gene therapy
Gene therapy
We are establishing gene replacement strategies and genome editing approaches with the aim of developing a clinically applicable gene therapy for RP2-associated retinitis pigmentosa. The comparatively small RP2 gene is particularly well suited for gene transfer and thus opens up promising therapeutic opportunities.