From molecules to models: A holistic review of autism spectrum disorder mechanisms and research tools

自闭症谱系障碍 自闭症 神经科学 心理学 神经发育障碍 大脑发育 疾病 光谱紊乱 转化研究 鉴定(生物学) 广谱 发展心理学 脆性X综合征 生物信息学 动物模型 钥匙(锁) 医学 幼儿
作者
Sriya Gullapalli,Lois Baldado,Megan W. Szobody,Anesu K Murambadoro,K. Garcia Valdez,Arjun Bellamkonda,Daniela Gonzalez,Usman Ghumman,Nikhilesh Anand,Kelsey Potter-Baker,Bharathi S. Gadad
出处
期刊:Neurobiology of Disease [Elsevier BV]
卷期号:217: 107187-107187 被引量:1
标识
DOI:10.1016/j.nbd.2025.107187
摘要

Autism Spectrum Disorder (ASD) is a complex neurodevelopmental condition characterized by persistent deficits in social communication and interaction, as well as restricted, repetitive patterns of behavior, interests, or activities. These features are associated with atypical early brain development and connectivity. While ASD has been traditionally associated with molecular genetic alterations, recent research highlights the significant contribution of various environmental factors to the pathophysiology of the disorder. Pathogenic genetic variations in key regulatory genes remain central to ASD risk; however, environmental influences such as advanced maternal or paternal age, poor maternal health during pregnancy, gestational diabetes mellitus, alterations in the early-life gut microbiome, and other perinatal or early childhood environmental exposures have all been associated with an increased likelihood of developing ASD. This review synthesizes recent advances in our understanding of ASD by providing a comprehensive analysis of the disorder's diverse pathophysiological mechanisms from multiple perspectives. Specifically, this paper discusses neurophysiological, behavioral, and post-mortem findings, and explores the utility of widely used animal models in ASD research. Particular attention is given to dysregulation of key metabolic pathways and the role of the gut-brain axis in ASD. The review also evaluates both established and emerging pharmacotherapeutic approaches, highlighting significant cellular, histological, and behavioral alterations associated with ASD. Collectively, these insights provide a foundation for developing novel tools to understand the molecular pathways of these genes and its implication of novel therapeutic opportunities for individuals with ASD.

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