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自闭症谱系障碍的神经生物学。

The neurobiology of autism spectrum disorders.

机构信息

Child and Adolescent Psychiatry Department, Instituto de Investigación Sanitaria Gregorio Marañón, IiSGM, Hospital General Universitario Gregorio Marañón, CIBERSAM, Ibiza 43, 28009 Madrid, Spain.

Child and Adolescent Psychiatry Department, Instituto de Investigación Sanitaria Gregorio Marañón, IiSGM, Hospital General Universitario Gregorio Marañón, CIBERSAM, Ibiza 43, 28009 Madrid, Spain.

出版信息

Eur Psychiatry. 2014 Jan;29(1):11-9. doi: 10.1016/j.eurpsy.2013.02.005. Epub 2013 Nov 22.

Abstract

Data is progressively and robustly accumulating regarding the biological basis of autism. Autism spectrum disorders (ASD) are currently considered a group of neurodevelopmental disorders with onset very early in life and a complex, heterogeneous, multifactorial aetiology. A comprehensive search of the last five years of the Medline database was conducted in order to summarize recent evidence on the neurobiological bases of autism. The main findings on genetic influence, neuropathology, neurostructure and brain networks are summarized. In addition, findings from peripheral samples of subjects with autism and animal models, which show immune, oxidative, mitochondrial dysregulations, are reported. Then, other biomarkers from very different systems associated with autism are reported. Finally, an attempt is made to try and integrate the available evidence, which points to a oligogenetic, multifactorial aetiology that converges in an aberrant micro-organization of the cortex, with abnormal functioning of the synapses and abnormalities in very general physiological pathways (such as inflammatory, immune and redox systems).

摘要

关于自闭症的生物学基础,数据正在逐步和稳健地积累。自闭症谱系障碍(ASD)目前被认为是一组神经发育障碍,其发病非常早,具有复杂、异质、多因素的病因。为了总结自闭症神经生物学基础的最新证据,对 Medline 数据库过去五年进行了全面搜索。总结了遗传影响、神经病理学、神经结构和大脑网络的主要发现。此外,还报告了自闭症患者外周样本和动物模型的免疫、氧化、线粒体失调等发现。然后,还报告了与自闭症相关的非常不同系统的其他生物标志物。最后,尝试整合现有证据,这些证据表明自闭症的病因具有寡基因、多因素的特点,最终导致皮质的微观结构异常,突触功能异常以及非常普遍的生理途径(如炎症、免疫和氧化还原系统)异常。

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