自闭症谱系障碍中星形胶质细胞与神经元的相互作用

Q3 Neuroscience Advances in neurobiology Pub Date : 2024-01-01 DOI:10.1007/978-3-031-64839-7_11
Amanda C S S Cano, Debora Santos, Patricia C B Beltrão-Braga
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引用次数: 0

摘要

自闭症谱系障碍(ASD)是一种复杂的神经发育性疾病,其特征是社交互动障碍,包括沟通障碍和特定的行为模式,如重复行为。ASD 的临床诊断通常需要一定的时间,一般在四岁前不会发病。影响突触传递的基因突变(如神经胶质蛋白和神经胶质蛋白)与 ASD 有关,并导致行为和认知障碍。最新研究强调了星形胶质细胞--大脑中最丰富的胶质细胞--在 ASD 病理学中的作用。星形胶质细胞中异常的 Ca2+ 信号与行为缺陷和神经炎症有关。值得注意的是,星形胶质细胞过度表达的细胞因子 IL-6 会影响突触生成。神经递质水平的改变、血脑屏障的破坏和细胞因子失调进一步加剧了 ASD 的复杂性。了解这些与星形胶质细胞相关的机制,为确定 ASD 亚型和开发靶向疗法带来了希望。
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The Interplay of Astrocytes and Neurons in Autism Spectrum Disorder.

Autism spectrum disorder (ASD) comprises a complex neurodevelopmental condition characterized by an impairment in social interaction, involving communication deficits and specific patterns of behaviors, like repetitive behaviors. ASD is clinically diagnosed and usually takes time, typically occurring not before four years of age. Genetic mutations affecting synaptic transmission, such as neuroligin and neurexin, are associated with ASD and contribute to behavioral and cognitive deficits. Recent research highlights the role of astrocytes, the brain's most abundant glial cells, in ASD pathology. Aberrant Ca2+ signaling in astrocytes is linked to behavioral deficits and neuroinflammation. Notably, the cytokine IL-6 overexpression by astrocytes impacts synaptogenesis. Altered neurotransmitter levels, disruptions in the blood-brain barrier, and cytokine dysregulation further contribute to ASD complexity. Understanding these astrocyte-related mechanisms holds promise for identifying ASD subtypes and developing targeted therapies.

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来源期刊
Advances in neurobiology
Advances in neurobiology Neuroscience-Neurology
CiteScore
2.80
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