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    Home > Active Ingredient News > Study of Nervous System > Nature Neurosci Sun Tao's team analyzes the molecular diversity of human embryonic brain interneurons

    Nature Neurosci Sun Tao's team analyzes the molecular diversity of human embryonic brain interneurons

    • Last Update: 2021-11-14
    • Source: Internet
    • Author: User
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    Editor | xi The normal function of the human brain relies on the accurate generation of different types of neurons and the construction of neural circuits between neurons
    .

    Excitatory glutamatergic neurons and inhibitory GABAergic interneurons are the two main types of cells in the brain
    .

    Among them, the interneuron is the key cell that maintains the balance of the brain's neural circuits and the normal function of the brain
    .

    Abnormal interneuron development is closely related to human psychiatric diseases, such as autism and schizophrenia
    .

    The human brain's interneurons are of various types, with complex shapes and functions
    .

    So far, we still know very little about the early proliferation, differentiation and radial migration of interneurons
    .

    On November 4, 2021, the team of Professor Tao Sun from the "Precision Medicine Research Center" of Huaqiao University published a research paper entitled Interneuron origin and molecular diversity in the human fetal brain in Nature Neuroscience, which systematically explained the interneurons of the human embryonic brain.
    The law of development
    .

    Interneurons in the mammalian brain come from the subpallium area and travel radially to reach the cerebral cortex
    .

    The subcortical area of ​​the human embryonic brain is composed of medial, lateral, and caudal ganglion elevations (MGE, LGE, and CGE)
    .

    In order to explore the origin and cell diversity of brain interneurons, researchers used single-cell RNA-seq and in situ sequencing to systematically reveal the different developmental stages of the human embryonic brain.
    The origin and specific molecular markers of interneurons
    .

    This research has three main findings: First: The shared neural progenitor: Although the interneuron precursor cells distributed in MGE, LGE and CGE express their specific genes, they are quasi-chronological.
    Analysis showed that they all came from the same neural progenitor cell population
    .

    Second: The specific combination of gene expression in the interneuron precursor cells, including transcription factors, determines the precise anatomical location of the interneuron in the subcortical region of the human embryo, and also determines the time sequence of interneuron development
    .

    This shows that the fate characteristics of interneurons in time and space are simultaneously regulated by accurate gene expression combinations
    .

    Third: Although the types of interneurons in the adult human cerebral cortex are diverse, the gene expression characteristics of these interneurons have been determined and maintained in the early embryonic development
    .

    In summary, the research of Professor Sun Tao's team shows that the diversity of interneurons in the human embryonic brain is determined by precise gene expression combinations
    .

    The cell fate of the interneurons of the adult brain is determined as early as the embryonic stage
    .

    Since anxiety, depression, autism and schizophrenia are closely related to the abnormal development of interneurons, this research provides new ideas for people to further explore the pathogenesis of mental diseases
    .

    Original link: https://doi.
    org/10.
    1038/s41593-021-00940-3 Platemaker: Notes for reprinting on the 11th [Non-original article] The copyright of this article belongs to the author of the article.
    Personal forwarding and sharing are welcome.
    Reprinting is prohibited without permission.
    The author has all legal rights, and offenders must be investigated
    .

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