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Organoids – the future of pre-clinical development of AAV gene therapy for CNS disorders

Victoria Kaiser, Anai Gonzalez-Cordero

2025Gene Therapy14 citationsDOIOpen Access PDF

Abstract

Advancements in our understanding of genetic disease and adeno-associated virus has prompted great excitement into the field of AAV-mediated gene therapy, particularly for genetic diseases of the central nervous system, including retinal disorders. Despite significant progress, exemplified by the approval of therapies such as Luxturna® and Zolgensma®, a substantial number of therapies remain in pre-clinical or early clinical stages, with many failing to advance to later phases. Whilst the use of animal models to test safety and delivery route efficacy of AAV treatments is imperative, differences in tissue structure and physiology between humans and animal models has restricted precise disease modelling and gene therapy development for many CNS disorders. Alongside the FDA push for non-animal alternative models, researchers are increasingly turning to human-based models, including stem cell-derived organoids, which can offer a more accurate representation of human cellular microenvironments and niches. As such, this review explores the advantages and limitations of brain and retinal organoids as pre-clinical models of disease, with a primary focus on their utility in identifying novel AAV capsids, cell-specific promoters, and their role in recent pre-clinical AAV gene therapy studies.

Topics & Concepts

Genetic enhancementBiologyDiseaseAdeno-associated virusNeuroscienceGene deliveryBioinformaticsComputational biologyMedicineGeneVector (molecular biology)PathologyGeneticsRecombinant DNAVirus-based gene therapy researchCRISPR and Genetic EngineeringRetinal Development and Disorders
Organoids – the future of pre-clinical development of AAV gene therapy for CNS disorders | Litcius