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Multiscale Spatial Transcriptomic Atlas of Human Basal Ganglia Cell-Type and Cellular Community Organization

Berackey, B. T.; Tan, Z.; Wu, G.; Das, S. C.; Li, R.; Esser, B.; Ye, Q.; Nafisi, M.; Park, S. S.; Sequeira Mendieta, P. A.; Berry, J.; Mamdani, F.; Zhu, Q.; Holmes, T. C.; Li, D.; Wang, T.; Behrens, M. M.; Ren, B.; Ecker, J. R.; Bintu, B.; Xu, X.

2025-12-05 neuroscience
10.64898/2025.12.02.691876 bioRxiv
Show abstract

We generated a multi-region, subcellular-resolution spatial transcriptomic atlas of the human basal ganglia by integrating MERFISH+ and Stereo-seq across four neurotypical donors. These datasets profiled [~]7 million cells spanning the caudate, putamen, nucleus accumbens, and globus pallidus, resolving 60 transcriptionally distinct cell types. We show region-selective, molecular and spatial diversification of medium-spiny-neuron cell types and multiple non-neuronal populations with distinct molecular identities and spatial localizations. Subcellular RNA localization captures somatic size and projection-inferred signatures that reflect direct and indirect pathway topology. Cellular community analyses reveal the enrichment of sub-clusters of astrocytes and oligodendrocytes at striosome-matrix borders, while primate-expanded interneurons are confined to matrix territories. Cross-species mapping uncovers orthologous striosome-matrix organization and conserved dorsolateral-ventromedial gene expression gradients. This atlas provides a foundational molecular and spatial framework for studying human basal ganglia architecture, offering a multi-centimeter scale resource that links cell types, spatial architecture, and subcellular transcript topography across multiple nuclei. HighlightsO_LIOur multi-centimeter scale spatial taxonomy identifies the precise locations of 60 neuronal and glial cell types of human basal ganglia. C_LIO_LIMERFISH+ and Stereo-seq platforms map consistent spatial modules that align with classical neuroanatomical nuclei. C_LIO_LID1D2 hybrid MSNs and primate-expanded interneurons show regional and domain specific organization C_LIO_LISubcellular RNA localization reports soma morphology and projection-inferred signatures. C_LI

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