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Developmental role of acetylcholinesterase in impulse control in zebrafish

机译:乙酰胆碱酯酶在斑马鱼冲动控制中的发展作用

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Cellular and molecular processes that mediate individual variability in impulsivity, a key behavioral component of many neuropsychiatric disorders, are poorly understood. Zebrafish heterozygous for a nonsense mutation in ache (ache~( sb55/ +)) showed lower levels of impulsivity in a 5-choice serial reaction time task (5-CSRTT) than wild type and ache~(+∕+). Assessment of expression of cholinergic (nAChR), serotonergic (5-HT), and dopamine (DR) receptor mRNA in both adult and larval (9 dpf) ache~( sb55/ +)revealed significant downregulation of chrna2, chrna5 , and drd2 mRNA in ache~( sb55/ +)larvae, but no differences in adults. Acute exposure to cholinergic agonist/antagonists had no effect on impulsivity, supporting the hypothesis that behavioral effects observed in adults were due to lasting impact of developmental alterations in cholinergic and dopaminergic signaling. This shows the cross-species role of cholinergic signaling during brain development in impulsivity, and suggests zebrafish may be a useful model for the role of cholinergic pathways as a target for therapeutic advances in addiction medicine.
机译:细胞和分子过程介导冲动的个体变异性,这是许多神经精神疾病的关键行为组成部分,人们对此知之甚少。斑马鱼杂合性无意义的疼痛(ache〜(sb55 / +))在5选择序列反应时间任务(5-CSRTT)中的冲动水平低于野生型和ache〜(+ ∕ +)。评估成年和幼虫(9 dpf)ache〜(sb55 / +)中胆碱能(nAChR),血清素能(5-HT)和多巴胺(DR)受体mRNA的表达可显着下调chrna2,chrna5和drd2 mRNA疼痛〜(sb55 / +)幼虫,但成虫无差异。胆碱能激动剂/拮抗剂的急性暴露对冲动没有影响,支持以下假说:在成年人中观察到的行为效应是由于胆碱能和多巴胺能信号的发展变化的持久影响所致。这表明在冲动的大脑发育过程中胆碱能信号的跨物种作用,并表明斑马鱼可能是胆碱能途径作为成瘾医学治疗进展目标的作用的有用模型。

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