Novel human pluripotent stem cell-derived hypothalamus organoids demonstrate cellular diversity
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https://www.ncbi.nlm.nih.gov/sra/SRP449369
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The hypothalamus is a region of the brain that plays an important role in regulating body functions and behaviors. There is a growing interest in human pluripotent stem cells (hPSCs) for modeling diseases that affect the hypothalamus. Here, we established an hPSC-derived hypothalamus organoid differentiation protocol to model the cellular diversity of this brain region. Using an hPSC line with a tyrosine hydroxylase (TH)-TdTomato reporter for dopaminergic neurons (DNs) and other TH-expressing cells, we interrogated DN-specific pathways and functions in electrophysiologically active hypothalamus organoids. Single-cell RNA sequencing (scRNA-seq) revealed diverse neuronal and non-neuronal cell types in mature hypothalamus organoids. We identified several molecularly distinct hypothalamic DN subtypes which demonstrated different developmental maturities. Our in vitro 3D hypothalamus differentiation protocol can be used to study the development of this critical brain structure and can be applied to disease modeling to generate novel therapeutic approaches for disorders centered around the hypothalamus. Overall design: Tyrosine hydroxylase(TH) high and low samples were sorted using FACS in triplicate. Each replicate was tagged with an antibody-oligo hashtag before pooling the three TH high and TH low samples and capturing ~15k cells for each group in a separate 10x reaction well using 3'
创建时间:
2023-09-16



