Institute for Genome Sciences, University of Maryland School of Medicine, Baltimore, MD, USA.
Department of Pharmacology, University of Maryland School of Medicine, Baltimore, MD, USA.
Sci Adv. 2023 Nov 10;9(45):eadf6251. doi: 10.1126/sciadv.adf6251. Epub 2023 Nov 8.
The development and diversity of neuronal subtypes in the human hypothalamus has been insufficiently characterized. To address this, we integrated transcriptomic data from 241,096 cells (126,840 newly generated) in the prenatal and adult human hypothalamus to reveal a temporal trajectory from proliferative stem cell populations to mature hypothalamic cell types. Iterative clustering of the adult neurons identified 108 robust transcriptionally distinct neuronal subtypes representing 10 hypothalamic nuclei. Pseudotime trajectories provided insights into the genes driving formation of these nuclei. Comparisons to single-cell transcriptomic data from the mouse hypothalamus suggested extensive conservation of neuronal subtypes despite certain differences in species-enriched gene expression. The uniqueness of hypothalamic neuronal lineages was examined developmentally by comparing excitatory lineages present in cortex and inhibitory lineages in ganglionic eminence, revealing both distinct and shared drivers of neuronal maturation across the human forebrain. These results provide a comprehensive transcriptomic view of human hypothalamus development through gestation and adulthood at cellular resolution.
人类下丘脑神经元亚型的发育和多样性尚未得到充分描述。为了解决这个问题,我们整合了来自 241096 个细胞(其中 126840 个是新生成的)的转录组数据,这些细胞来自产前和成人的人类下丘脑,揭示了从增殖干细胞群到成熟下丘脑细胞类型的时间轨迹。对成年神经元进行的迭代聚类确定了 108 个具有明显转录差异的神经元亚型,代表 10 个下丘脑核。拟时轨迹提供了关于驱动这些核形成的基因的见解。与来自小鼠下丘脑的单细胞转录组数据的比较表明,尽管在物种丰富的基因表达方面存在某些差异,但神经元亚型仍具有广泛的保守性。通过比较皮质中的兴奋性谱系和神经节隆起中的抑制性谱系,在发育过程中检查了下丘脑神经元谱系的独特性,揭示了整个人类前脑成熟的不同和共同驱动因素。这些结果以细胞分辨率提供了人类下丘脑从妊娠到成年发育的全面转录组视图。