Behavioral alterations of zebrafish larvae after early embryonic exposure to ketamine.

Rationale: Ketamine has been associated with pediatric risks that include neurocognitive impairment and long-term behavioral disorders. However, the neurobehavioral effects of ketamine exposure in early development remain uncertain. Objectives: This study aimed to test stage- and dose-dependent effe...

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Publicado en:Psychopharmacology Vol. 234; no. 4; pp. 549 - 559
Autores principales: Félix, Luís, Antunes, Luís, Coimbra, Ana, Valentim, Ana
Formato: Journal Article
Publicado: Springer Nature Feb2017
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Feb2017
      vid: 234
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      pub: Springer Nature
      place: New York, New York
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        120927496
        143931077
        10.1007/s00213-016-4491-7
        120927496
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        atl: Behavioral alterations of zebrafish larvae after early embryonic exposure to ketamine.
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        au:
          Félix, Luís
          Antunes, Luís
          Coimbra, Ana
          Valentim, Ana
        affil: Centre for the Research and Technology of Agro-Environmental and Biological Sciences (CITAB) , University of Trás-os-Montes and Alto Douro (UTAD) , Vila Real Portugal
      sug:
      ab: Rationale: Ketamine has been associated with pediatric risks that include neurocognitive impairment and long-term behavioral disorders. However, the neurobehavioral effects of ketamine exposure in early development remain uncertain. Objectives: This study aimed to test stage- and dose-dependent effects of ketamine exposure on certain brain functions by evaluating alterations in locomotion, anxiety-like and avoidance behaviors, as well as socialization. Methods: Embryos were exposed to different concentrations of ketamine (0, 0.2, 0.4, and 0.8 mg mL) for 20 min during the 256-cell (2.5 h post fertilization-hpf), 50% epiboly (5.5 hpf), and 1-4 somites (10.5 hpf) stages. General exploratory activities, natural escape-like responses, and social interactions were analyzed under continuous light or under a moving light stimulus. Results: A dose-dependent decrease in the overall mean speed was perceived in the embryos exposed during the 256-cell stage. These results were related to previously observed head and eye malformations, following ketamine exposure at this stage and may indicate possible neurobehavioral disorders when ketamine exposure is performed at this stage. Results also showed that ketamine exposure during the 50% epiboly and 1-4 somites stages induced a significant increment of the anxiety-like behavior and a decrease in avoidance behavior in all exposed groups. Conclusions: Overall, the results validate the neurodevelopmental risks of early-life exposure to ketamine.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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