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遗传综合征相关自闭症的电生理和行为证据:超敏与低敏。

Electrophysiological and Behavioral Evidence for Hyper- and Hyposensitivity in Rare Genetic Syndromes Associated with Autism.

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Science, 117485 Moscow, Russia.

Sirius Center for Cognitive Research, Sirius University of Science and Technology, 354340 Sochi, Russia.

出版信息

Genes (Basel). 2022 Apr 11;13(4):671. doi: 10.3390/genes13040671.

Abstract

Our study reviewed abnormalities in spontaneous, as well as event-related, brain activity in syndromes with a known genetic underpinning that are associated with autistic symptomatology. Based on behavioral and neurophysiological evidence, we tentatively subdivided the syndromes on primarily hyper-sensitive (Fragile X, Angelman) and hypo-sensitive (Phelan-McDermid, Rett, Tuberous Sclerosis, Neurofibromatosis 1), pointing to the way of segregation of heterogeneous idiopathic ASD, that includes both hyper-sensitive and hypo-sensitive individuals. This segmentation links abnormalities in different genes, such as , and , that are causative to the above-mentioned syndromes and associated with synaptic transmission and cell growth, as well as with translational and transcriptional regulation and with sensory sensitivity. Excitation/inhibition imbalance related to GABAergic signaling, and the interplay of tonic and phasic inhibition in different brain regions might underlie this relationship. However, more research is needed. As most genetic syndromes are very rare, future investigations in this field will benefit from multi-site collaboration with a common protocol for electrophysiological and event-related potential (EEG/ERP) research that should include an investigation into all modalities and stages of sensory processing, as well as potential biomarkers of GABAergic signaling (such as 40-Hz ASSR).

摘要

我们的研究回顾了具有已知遗传基础并与自闭症症状相关的综合征中自发性和事件相关的大脑活动异常。基于行为和神经生理学证据,我们初步将这些综合征分为主要超敏(脆性 X、Angelman)和低敏(Phelan-McDermid、Rett、结节性硬化症、神经纤维瘤病 1),这表明了异质性特发性 ASD 的分离方式,包括超敏和低敏个体。这种分割将导致上述综合征的不同基因(如 、和 )的异常联系起来,这些基因与突触传递和细胞生长以及翻译和转录调节以及感觉敏感性有关。与 GABA 能信号相关的兴奋/抑制失衡,以及不同脑区的紧张性和相发性抑制相互作用可能是这种关系的基础。然而,还需要更多的研究。由于大多数遗传综合征非常罕见,未来在这一领域的研究将受益于多地点合作,采用电生理和事件相关电位(EEG/ERP)研究的共同方案,该方案应包括对所有感觉处理模式和阶段的调查,以及 GABA 能信号的潜在生物标志物(如 40-Hz ASSR)。

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