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多巴胺能信号调节斑马鱼幼虫对电的反应。

Dopaminergic signaling regulates zebrafish larvae's response to electricity.

机构信息

Department of Mechanical Engineering, York University, Toronto, Ontario, Canada.

Department of Biology, York University, Toronto, Ontario, Canada.

出版信息

Biotechnol J. 2022 Jun;17(6):e2100561. doi: 10.1002/biot.202100561. Epub 2022 Apr 5.

Abstract

Electrical stimulation of brain or muscle activities has gained attention for studying the molecular and cellular mechanisms involved in electric-induced responses. We recently showed zebrafish's response to electricity. Here, we hypothesized that this response is affected by the dopaminergic signaling pathways. The effects of multiple dopamine agonists and antagonists on the electric response of 6 days-postfertilization zebrafish larvae were investigated using a microfluidic device with enhanced control of experimentation and throughput. All dopamine antagonists decreased locomotor activities, while dopamine agonists did not induce similar behaviors. The D2-selective dopamine agonist quinpirole enhanced the movement. Exposure to nonselective and D1-selective dopamine agonists apomorphine and SKF-81297 caused no significant change in the electric response. Exposing larvae that were pretreated with nonselective and D2-selective dopamine antagonists butaclamol and haloperidol to apomorphine and quinpirole, respectively, restored the electric locomotion. These results reveal a correlation between electric response and dopamine signaling pathway. Furthermore, they demonstrate that electric-induced zebrafish larvae locomotion can be conditioned by modulating dopamine receptor functions. Our electrofluidic assay has profound application potential for fundamental electric-induced response research and brain disorder studies especially those related to the dopamine imbalance and as a chemical screening method when investigating biological pathways and behaviors.

摘要

电刺激大脑或肌肉活动已引起人们的关注,因为它可以研究与电诱导反应相关的分子和细胞机制。我们最近研究了斑马鱼对电的反应。在这里,我们假设这种反应受到多巴胺能信号通路的影响。我们使用具有增强实验控制和高通量的微流控装置,研究了多种多巴胺激动剂和拮抗剂对 6 天龄受精斑马鱼幼虫电反应的影响。所有多巴胺拮抗剂均降低了运动活性,而多巴胺激动剂则未诱导类似行为。D2 选择性多巴胺激动剂喹吡罗增强了运动。非选择性和 D1 选择性多巴胺激动剂阿扑吗啡和 SKF-81297 对电反应没有明显影响。用非选择性和 D2 选择性多巴胺拮抗剂巴氯芬和氟哌啶醇预处理幼虫,然后分别用阿扑吗啡和喹吡罗处理,可恢复电运动。这些结果揭示了电反应与多巴胺信号通路之间的相关性。此外,它们表明,通过调节多巴胺受体功能,可以对电诱导的斑马鱼幼虫运动进行调节。我们的电液分析具有深远的应用潜力,可用于基础电诱导反应研究和大脑紊乱研究,特别是与多巴胺失衡有关的研究,并且可作为调查生物途径和行为的化学筛选方法。

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