Department of Neurobiology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Genesis. 2024 Apr;62(2):e23590. doi: 10.1002/dvg.23590.
The role of neurogenesis in neurodevelopmental disorders (NDDs) merits much attention. The complex process by which stem cells produce daughter cells that in turn differentiate into neurons, migrate various distances, and form synaptic connections that are then refined by neuronal activity or experience is integral to the development of the nervous system. Given the continued postnatal neurogenesis that occurs in the mammalian olfactory system, it provides an ideal model for understanding how disruptions in distinct stages of neurogenesis contribute to the pathophysiology of various NDDs. This review summarizes and discusses what is currently known about the disruption of neurogenesis within the olfactory system as it pertains to attention-deficit/hyperactivity disorder, autism spectrum disorder, Down syndrome, Fragile X syndrome, and Rett syndrome. Studies included in this review used either human subjects, mouse models, or Drosophila models, and lay a compelling foundation for continued investigation of NDDs by utilizing the olfactory system.
神经发生在神经发育障碍(NDDs)中的作用值得高度关注。干细胞产生子细胞的复杂过程,这些子细胞继而分化为神经元,迁移到不同的距离,并形成突触连接,然后通过神经元活动或经验进行精炼,这是神经系统发育的关键。鉴于哺乳动物嗅觉系统中持续的出生后神经发生,它为理解神经发生在不同阶段的中断如何导致各种 NDD 的病理生理学提供了理想的模型。这篇综述总结和讨论了目前已知的与注意力缺陷多动障碍、自闭症谱系障碍、唐氏综合征、脆性 X 综合征和雷特综合征相关的嗅觉系统中神经发生中断的情况。本综述中包含的研究使用了人类受试者、小鼠模型或果蝇模型,为利用嗅觉系统继续研究 NDD 奠定了坚实的基础。