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Huntington's disease cellular phenotypes are rescued non-cell autonomously by healthy cells in mosaic telencephalic organoids. | LitMetric

AI Article Synopsis

  • Huntington's disease (HD) leads to the degeneration of specific brain neurons, resulting in a mix of functional and dysfunctional cells, but the interactions between these cell types are not well understood.
  • Researchers created brain organoids containing both healthy and HD cells, finding that HD organoids displayed neurodevelopmental issues and fewer GABAergic neurons compared to healthy ones.
  • Healthy cells in mixed organoids helped to restore the identity and function of HD cells through direct interactions, suggesting that enhancing communication between different cell types could offer new treatment strategies for HD.

Article Abstract

Huntington's disease (HD) causes selective degeneration of striatal and cortical neurons, resulting in cell mosaicism of coexisting still functional and dysfunctional cells. The impact of non-cell autonomous mechanisms between these cellular states is poorly understood. Here we generated telencephalic organoids with healthy or HD cells, grown separately or as mosaics of the two genotypes. Single-cell RNA sequencing revealed neurodevelopmental abnormalities in the ventral fate acquisition of HD organoids, confirmed by cytoarchitectural and transcriptional defects leading to fewer GABAergic neurons, while dorsal populations showed milder phenotypes mainly in maturation trajectory. Healthy cells in mosaic organoids restored HD cell identity, trajectories, synaptic density, and communication pathways upon cell-cell contact, while showing no significant alterations when grown with HD cells. These findings highlight cell-type-specific alterations in HD and beneficial non-cell autonomous effects of healthy cells, emphasizing the therapeutic potential of modulating cell-cell communication in disease progression and treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11297310PMC
http://dx.doi.org/10.1038/s41467-024-50877-xDOI Listing

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