Division of Neurotoxicology, National Center for Toxicological Research, U.S. Food and Drug Administration, 3900 NCTR Road, Jefferson, AR 72079, USA.
Int J Mol Sci. 2024 Mar 19;25(6):3459. doi: 10.3390/ijms25063459.
The exact mechanisms of the development of autism, a multifactorial neurological disorder, are not clear. The pathophysiology of autism is complex, and investigations at the cellular and molecular levels are ongoing to provide clarity. Mutations in specific genes have been identified as risk factors for autism. The role of heavy metals in the pathogenesis of autism is subject to many studies and remains debatable. Although no exact neuronal phenotypes have been identified linked to autistic symptoms, overproduction and reduction of specific neurons have been implicated. A growing literature on generating genetic and non-genetic models of autism aims to help with understanding mechanistic studies that can explain the complexity of the disorder. Both genetic and non-genetic methods of zebrafish have been used to model autism. For several human autism risk genes, validated zebrafish mutant models have been generated. There is growing evidence indicating a potential link between autism and inorganic arsenic exposure. We have previously shown that inorganic arsenic induces supernumerary spinal motor neurons via Sonic hedgehog (Shh) signaling pathway, and Cdk5 knockdown causes an overproduction of cranial and spinal motor neurons in zebrafish. Here, in this review, we provide a perspective on what these findings of neurogenic phenotypes mean in terms of dysregulated pathways of motor neuron development and their applicability to understanding cellular and molecular underpinnings of autism.
自闭症是一种多因素的神经发育障碍,其确切发病机制尚不清楚。自闭症的病理生理学较为复杂,目前正在进行细胞和分子水平的研究以阐明其机制。已经确定特定基因突变是自闭症的风险因素。重金属在自闭症发病机制中的作用受到许多研究的关注,但仍存在争议。虽然尚未确定与自闭症症状相关的确切神经元表型,但已经涉及特定神经元的过度产生和减少。越来越多的关于自闭症的遗传和非遗传模型的文献旨在帮助理解能够解释该疾病复杂性的机制研究。已经使用遗传和非遗传方法的斑马鱼来模拟自闭症。已经为几个人类自闭症风险基因生成了经过验证的斑马鱼突变模型。越来越多的证据表明自闭症与无机砷暴露之间存在潜在联系。我们之前已经表明,无机砷通过 Sonic hedgehog (Shh) 信号通路诱导脊髓运动神经元的过度产生,并且 Cdk5 敲低导致斑马鱼颅神经和脊髓运动神经元的过度产生。在这里,在这篇综述中,我们从失调的运动神经元发育途径的角度来探讨这些神经发生表型的发现意味着什么,以及它们在理解自闭症的细胞和分子基础方面的适用性。