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Pharmacological analysis of zebrafish lphn3.1 morphant larvae suggests that saturated dopaminergic signaling could underlie the ADHD-like locomotor hyperactivity

机译:斑马鱼lphn3.1突变体幼虫的药理分析表明饱和的多巴胺能信号可能是ADHD样运动过度的基础

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摘要

Polymorphisms in the gene coding for the adhesion G-protein coupled receptor LPHN3 are a risk factor for attention-deficit/hyperactivity disorder (ADHD). Transient down-regulation of latrophilin3.1 (lphn3.1), the zebrafish LPHN3 homologue, causes hyperactivity. Zebrafish injected with a lphn3.1-specific morpholino are hyperactive and display an impairment in dopaminergic neuron development. In the present study we used lphn3.1 morphants to further characterize the changes to dopaminergic signaling that trigger hyperactivity. We applied dopamine agonists (Apomorphine, Quinpirole, SKF-38393) and antagonists (Haloperidol, Eticlopride, SCH-23390) to Lphn3.1 morpholino-injected or control-injected animals. The percentage of change in locomotor activity was then determined at three different time periods (10–20 min, 30–40 min and 60–70 min). Our results show that drugs targeting dopamine receptors appear to elicit similar effects on locomotion in zebrafish larvae and mammals. In addition, we observed that lphn3.1 morphants have an overall hyposensitivity to dopamine agonists and antagonists compared to control fish. These results are compatible with a model whereby dopaminergic neurotransmission is saturated in lphn3.1 morphants.
机译:编码粘附G蛋白偶联受体LPHN3的基因中的多态性是注意力不足/多动障碍(ADHD)的危险因素。斑马鱼LPHN3同源物latrophilin3.1(lphn3.1)的瞬时下调会引起过度活跃。注射了lphn3.1特异性吗啉代的斑马鱼过度活跃,并且多巴胺能神经元发育受损。在本研究中,我们使用lphn3.1 morphant来进一步表征触发多动症的多巴胺能信号传导的变化。我们将多巴胺激动剂(阿扑吗啡,喹吡罗,SKF-38393)和拮抗剂(Haloperidol,Eticlopride,SCH-23390)应用于注射Lphn3.1吗啉代或对照注射的动物。然后在三个不同的时间段(10-20分钟,30-40分钟和60-70分钟)确定运动能力变化的百分比。我们的结果表明,靶向多巴胺受体的药物似乎对斑马鱼幼虫和哺乳动物的运动引起相似的影响。另外,我们观察到与对照鱼相比,lphn3.1 morphant对多巴胺激动剂和拮抗剂具有总体上的低敏感性。这些结果与模型相吻合,在该模型中,多巴胺能神经传递在lphn3.1吗啡子中达到饱和。

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