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Unveiling the Cellular and Molecular Mechanisms of Diabetic Retinopathy with Human Retinal Organoids

GSE290024 Homo sapiens Expression profiling by high throughput sequencing 6 samples Submitted 2025/02/24 Platform GPL18573
Summary
Diabetic retinopathy (DR) is a leading cause of vision impairment worldwide, driven by chronic hyperglycaemia and its complex metabolic consequences. While animal models have been widely used to study DR, they often fail to replicate human retinal physiology. To address this limitation, we utilized human retinal organoids as a model to investigate hyperglycaemia-induced changes, focusing on late-stage organoids (D150+28), where we performed next-generation sequencing (NGS). Transcriptomic analysis revealed significant disruptions in photoreceptor maturation, with a marked downregulation of genes associated with phototransduction and sensory perception. Oxidative stress-related pathways were upregulated, suggesting an enhanced reactive oxygen species (ROS) response. While photoreceptors were particularly vulnerable to hyperglycaemia, other retinal cell types, including bipolar cells, ganglion cells, and Müller glia, exhibited greater resilience. Additionally, glial activation, evidenced by increased expression of astrocyte markers (CD44, GFAP, TGFBR2), suggested a reactive gliosis response.
Published in
Unveiling the cellular and molecular mechanisms of diabetic retinopathy with human retinal organoids
Polešovská L, Trmačová S, Celiker C et al. · Cell death & disease 2025 · PMID 41419458 · doi:10.1038/s41419-025-08244-1
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Direct links to NCBI, no account and no request form: the whole study as GSE290024_RAW.tar, processed values as the series matrix, the supplementary file directory, and per-sample supplementary files for any of the 6 samples. Raw sequencing reads are also available from ENA.

Also filed as BioProject PRJNA1225751 and SRA study SRP565081. Searching any of these in the dataset finder brings you back here.

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