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The Dopamine Hypothesis of Autism Spectrum Disorder Revisited: Current Status and Future Prospects

期刊

DEVELOPMENTAL NEUROSCIENCE
卷 43, 期 2, 页码 73-83

出版社

KARGER
DOI: 10.1159/000515751

关键词

Hypothesis; Midbrain; Autism; Dopamine; Pediatric autoimmune neuropsychiatric disorder associated with streptococcal infections

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Recent studies have proposed a dopamine hypothesis for autism spectrum disorder, suggesting that dysfunctional midbrain dopaminergic system may contribute to the core behavioral features of ASD. This model has gained support from various researches, highlighting the potential importance of targeting dopamine pathways in understanding and treating ASD.
Autism spectrum disorder (ASD) comprises a group of neurodevelopmental disorders characterized by social deficits and stereotyped behaviors. Despite intensive research, its etiopathogenesis remains largely unclear. Although studies consistently reported dopaminergic anomalies, a coherent dopaminergic model of ASD was lacking until recently. In 2017, we provided a theoretical framework for a dopamine hypothesis of ASD which proposed that autistic behavior arises from a dysfunctional midbrain dopaminergic system. Namely, we hypothesized that malfunction of 2 critical circuits originating in the midbrain, that is, the mesocorticolimbic and nigrostriatal pathways, generates the core behavioral features of ASD. Moreover, we provided key predictions of our model along with testing means. Since then, a notable number of studies referenced our work and numerous others provided support for our model. To account for these developments, we review all these recent data and discuss their implications. Furthermore, in the light of these new insights, we further refine and reconceptualize our model, debating on the possibility that various etiologies of ASD converge upon a dysfunctional midbrain dopaminergic system. In addition, we discuss future prospects, providing new means of testing our hypothesis, as well as its limitations. Along these lines, we aimed to provide a model which, if confirmed, could provide a better understanding of the etiopathogenesis of ASD along with new therapeutic strategies.

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