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Current State of Modeling Human Psychiatric Disorders Using Zebrafish

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MDPI
DOI: 10.3390/ijms24043187

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Danio rerio; animal modelling; translational biopsychiatry; psychiatric disorders

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Psychiatric disorders are prevalent brain pathologies. Reliable animal models are needed for effective treatment. Zebrafish show complex behaviors similar to rodents and humans, making them suitable for modeling psychiatric disorders. However, there are challenges and the field needs further discussion and consideration of clinical prevalence and pathological complexity. Recent developments in molecular biology might pave the way for wider use of zebrafish in CNS disease modeling.
Psychiatric disorders are highly prevalent brain pathologies that represent an urgent, unmet biomedical problem. Since reliable clinical diagnoses are essential for the treatment of psychiatric disorders, their animal models with robust, relevant behavioral and physiological endpoints become necessary. Zebrafish (Danio rerio) display well-defined, complex behaviors in major neurobehavioral domains which are evolutionarily conserved and strikingly parallel to those seen in rodents and humans. Although zebrafish are increasingly often used to model psychiatric disorders, there are also multiple challenges with such models as well. The field may therefore benefit from a balanced, disease-oriented discussion that considers the clinical prevalence, the pathological complexity, and societal importance of the disorders in question, and the extent of its detalization in zebrafish central nervous system (CNS) studies. Here, we critically discuss the use of zebrafish for modeling human psychiatric disorders in general, and highlight the topics for further in-depth consideration, in order to foster and (re)focus translational biological neuroscience research utilizing zebrafish. Recent developments in molecular biology research utilizing this model species have also been summarized here, collectively calling for a wider use of zebrafish in translational CNS disease modeling.

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