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Three-dimensional Co-culturing Reveals Human Stem Cell-Derived Somatostatin Interneurons with Subclass Expression

GSE305121 Homo sapiens Expression profiling by high throughput sequencing 5 samples Submitted 2025/09/09 Platform GPL24676
Summary
Cortical interneuron deficiencies, particularly involving the somatostatin (SST) subtypes, contribute to neurological and neuropsychiatric disorders. These interneurons are difficult to derive in vitro from human embryonic stem cells (hESCs) due to their late embryonic development and dependence on glial interaction. To this end, we developed a three-dimensional co-culture model of hESC-derived neurons, enabling long-term development, functional maturity, and neuron-glial interaction. Under these conditions, hESCs successfully differentiated into functional GABAergic interneurons expressing the SST gene and protein within 50 days. Single-nuclei RNA sequencing revealed transcripts for SST subclasses, including Martinotti, non-Martinotti, and long-projecting neurons, that have not yet been described for hESC cultures. Upon injection into forebrain organoids, the interneuron progenitors spread and functionally matured while retaining their SST subclass identities, suggesting cell-intrinsic fate specification. Our in vitro model provides a robust platform for studying human SST interneurons, offering new avenues for investigating their role in health and disease.
Published in
Three-dimensional co-culturing reveals human stem cell-derived somatostatin interneurons with subclass expression
Bruzelius A, Stamouli CA, Hölldobler AL et al. · Stem cell reports 2025 · PMID 40930061 · doi:10.1016/j.stemcr.2025.102634
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Also filed as BioProject PRJNA1304466. Searching any of these in the dataset finder brings you back here.

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