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自闭症中功能连接改变的神经遗传学:来自657名个体亚型分析的见解

The Neurogenetics of Functional Connectivity Alterations in Autism: Insights From Subtyping in 657 Individuals.

作者信息

Rasero Javier, Jimenez-Marin Antonio, Diez Ibai, Toro Roberto, Hasan Mazahir T, Cortes Jesus M

机构信息

Cognitive Axon Laboratory, Department of Psychology, Carnegie Mellon University, Pittsburgh, Pennsylvania.

Computational Neuroimaging Laboratory, Biocruces-Bizkaia Health Research Institute, Barakaldo, Spain; Biomedical Research Doctorate Program, University of the Basque Country, Leioa, Spain.

出版信息

Biol Psychiatry. 2023 Nov 15;94(10):804-813. doi: 10.1016/j.biopsych.2023.04.014. Epub 2023 Apr 22.

Abstract

BACKGROUND

There is little consensus and controversial evidence on anatomical alterations in the brains of people with autism spectrum disorder (ASD), due in part to the large heterogeneity present in ASD, which in turn is a major drawback for developing therapies. One strategy to characterize this heterogeneity in ASD is to cluster large-scale functional brain connectivity profiles.

METHODS

A subtyping approach based on consensus clustering of functional brain connectivity patterns was applied to a population of 657 autistic individuals with quality-assured neuroimaging data. We then used high-resolution gene transcriptomic data to characterize the molecular mechanism behind each subtype by performing enrichment analysis of the set of genes showing a high spatial similarity with the profiles of functional connectivity alterations between each subtype and a group of typically developing control participants.

RESULTS

Two major stable subtypes were found: subtype 1 exhibited hypoconnectivity (less average connectivity than typically developing control participants) and subtype 2, hyperconnectivity. The 2 subtypes did not differ in structural imaging metrics in any of the analyzed regions (68 cortical and 14 subcortical) or in any of the behavioral scores (including IQ, Autism Diagnostic Interview, and Autism Diagnostic Observation Schedule). Finally, only subtype 2, comprising about 43% of ASD participants, led to significant enrichments after multiple testing corrections. Notably, the dominant enrichment corresponded to excitation/inhibition imbalance, a leading well-known primary mechanism in the pathophysiology of ASD.

CONCLUSIONS

Our results support a link between excitation/inhibition imbalance and functional connectivity alterations, but only in one ASD subtype, overall characterized by brain hyperconnectivity and major alterations in somatomotor and default mode networks.

摘要

背景

关于自闭症谱系障碍(ASD)患者大脑的解剖学改变,目前几乎没有共识且证据存在争议,部分原因是ASD存在很大的异质性,这反过来又成为开发治疗方法的一个主要障碍。表征ASD这种异质性的一种策略是对大规模功能性脑连接图谱进行聚类。

方法

基于功能性脑连接模式的共识聚类的亚型分析方法应用于657名自闭症个体组成的群体,这些个体具有质量有保证的神经影像学数据。然后,我们使用高分辨率基因转录组数据,通过对一组基因进行富集分析来表征每个亚型背后的分子机制,这些基因与每个亚型和一组典型发育的对照参与者之间的功能性连接改变图谱具有高度的空间相似性。

结果

发现了两个主要的稳定亚型:亚型1表现为连接不足(平均连接性低于典型发育的对照参与者),亚型2表现为连接过度。在任何分析区域(68个皮质区域和14个皮质下区域)的结构成像指标或任何行为评分(包括智商、自闭症诊断访谈和自闭症诊断观察量表)中,这两个亚型均无差异。最后,只有占ASD参与者约43%的亚型2在多重检验校正后导致显著富集。值得注意的是,主要的富集对应于兴奋/抑制失衡,这是ASD病理生理学中一个著名的主要机制。

结论

我们的结果支持兴奋/抑制失衡与功能性连接改变之间的联系,但仅在一种ASD亚型中存在这种联系,总体上该亚型的特征是脑连接过度以及躯体运动和默认模式网络的主要改变。

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