Department of Neuroscience and Mahoney Institute for Neurosciences, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Neuroscience and Mahoney Institute for Neurosciences, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Cell Stem Cell. 2022 Nov 3;29(11):1594-1610.e8. doi: 10.1016/j.stem.2022.09.010.
The molecular diversity of glia in the human hippocampus and their temporal dynamics over the lifespan remain largely unknown. Here, we performed single-nucleus RNA sequencing to generate a transcriptome atlas of the human hippocampus across the postnatal lifespan. Detailed analyses of astrocytes, oligodendrocyte lineages, and microglia identified subpopulations with distinct molecular signatures and revealed their association with specific physiological functions, age-dependent changes in abundance, and disease relevance. We further characterized spatiotemporal heterogeneity of GFAP-enriched astrocyte subpopulations in the hippocampal formation using immunohistology. Leveraging glial subpopulation classifications as a reference map, we revealed the diversity of glia differentiated from human pluripotent stem cells and identified dysregulated genes and pathological processes in specific glial subpopulations in Alzheimer's disease (AD). Together, our study significantly extends our understanding of human glial diversity, population dynamics across the postnatal lifespan, and dysregulation in AD and provides a reference atlas for stem-cell-based glial differentiation.
人类海马体中的神经胶质细胞的分子多样性及其在整个生命周期中的时间动态仍很大程度上未知。在这里,我们进行了单核 RNA 测序,生成了整个出生后生命过程中海马体的转录组图谱。对星形胶质细胞、少突胶质细胞谱系和小胶质细胞的详细分析确定了具有不同分子特征的亚群,并揭示了它们与特定生理功能、丰度随年龄变化和疾病相关性的关联。我们进一步使用免疫组织化学方法对海马区富含 GFAP 的星形胶质细胞亚群的时空异质性进行了表征。利用神经胶质细胞亚群分类作为参考图谱,我们揭示了从人类多能干细胞分化而来的神经胶质细胞的多样性,并确定了阿尔茨海默病(AD)中特定神经胶质亚群中失调的基因和病理过程。总之,我们的研究显著扩展了我们对人类神经胶质细胞多样性、出生后生命过程中的群体动态以及 AD 中的失调的理解,并为基于干细胞的神经胶质分化提供了参考图谱。