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自闭症的基因组学

Genomics of Autism.

作者信息

Fakhro Khalid A

机构信息

Sidra Medicine, Doha, Qatar.

出版信息

Adv Neurobiol. 2020;24:83-96. doi: 10.1007/978-3-030-30402-7_3.

Abstract

Autism spectrum disorder (ASD) is a heterogeneous condition affecting >1% of all children, characterized by impaired social interactions, repetitive behavior and a widely variable spectrum of comorbidities. These comorbidities may include developmental delay, gastrointestinal problems, cardiac disorders, immune and autoimmune dysregulation, neurological manifestations (e.g., epilepsy, intellectual disability), and other clinical features. This wide phenotypic heterogeneity is difficult to predict and manifests across a wide range of ages and with a high degree of difference in severity, making disease management and prediction of a successful intervention very difficult. Recently, advances in genomics and other molecular technologies have enabled the study of ASD on a molecular level, illuminating genes and pathways whose perturbations help explain the clinical variability among patients, and whose impairments provide possible opportunities for better treatment options. In fact, there are now >1000 genes that have been linked to ASD through genetic studies of more than 10,000 patients and their families. This chapter discusses these discoveries and in the context of recent developments in genomics and bioinformatics, while also examining the trajectory of gene discovery efforts over the past few decades, as both better ascertainment and global attention have been given to this highly vulnerable patient population.

摘要

自闭症谱系障碍(ASD)是一种影响超过1%儿童的异质性疾病,其特征为社交互动受损、重复行为以及广泛多样的共病谱。这些共病可能包括发育迟缓、胃肠道问题、心脏疾病、免疫和自身免疫失调、神经学表现(如癫痫、智力残疾)以及其他临床特征。这种广泛的表型异质性难以预测,且在广泛的年龄范围内出现,严重程度差异很大,使得疾病管理和成功干预的预测非常困难。最近,基因组学和其他分子技术的进展使得能够在分子水平上研究ASD,揭示了一些基因和通路,其扰动有助于解释患者之间的临床变异性,其功能受损为更好的治疗选择提供了可能的机会。事实上,通过对10000多名患者及其家庭的基因研究,目前已有超过一千个基因与ASD相关联。本章将在基因组学和生物信息学的最新发展背景下讨论这些发现,同时审视过去几十年基因发现工作的轨迹,因为对这一高度脆弱的患者群体有了更好的确诊和全球关注。

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