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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Chemogenetic ablation of dopaminergic neurons leads to transient locomotor impairments in zebrafish larvae
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Chemogenetic ablation of dopaminergic neurons leads to transient locomotor impairments in zebrafish larvae

机译:多巴胺能神经元的化学生成消融导致斑马鱼幼虫的暂时性运动障碍

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To determine the impact of a controlled loss of dopaminergic neurons on locomotor function, we generated transgenic zebrafish, Tg(dat:CFP-NTR), expressing a cyan fluorescent protein-nitroreductase fusion protein (CFP-NTR) under the control of dopamine transporter (dat) cis-regulatory elements. Embryonic and larval zebrafish express the transgene in several groups of dopaminergic neurons, notably in the olfactory bulb, telencephalon, diencephalon and caudal hypothalamus. Administration of the pro-drug metronidazole (Mtz) resulted in activation of caspase 3 in CFP-positive neurons and in a reduction in dat-positive cells by 5days post-fertilization (dpf). Loss of neurons coincided with impairments in global locomotor parameters such as swimming distance, percentage of time spent moving, as well as changes in tail bend parameters such as time to maximal bend and angular velocity. Dopamine levels were transiently decreased following Mtz administration. Recovery of some of the locomotor parameters was observed by 7 dpf. However, the total numbers of dat-expressing neurons were still decreased at 7, 12, or 14 dpf, even though there was evidence for production of new dat-expressing cells. Tg(dat:CFP-NTR) zebrafish provide a model to correlate altered dopaminergic neuron numbers with locomotor function and to investigate factors influencing regeneration of dopaminergic neurons.
机译:为了确定多巴胺能神经元受控损失对运动功能的影响,我们生成了转基因斑马鱼Tg(dat:CFP-NTR),在多巴胺转运蛋白的控制下表达了蓝绿色荧光蛋白-硝基还原酶融合蛋白(CFP-NTR)。 dat)顺式调节元件。胚胎斑马鱼和幼虫斑马鱼在几组多巴胺能神经元中表达转基因,特别是在嗅球,端脑,中脑和尾下丘脑中。受精甲硝唑(Mtz)的施用导致受精后5天(dpf)激活CFP阳性神经元中的胱天蛋白酶3,并导致dat阳性细胞减少。神经元的丧失与诸如运动距离,运动所花费的时间百分比以及尾部弯曲参数(例如达到最大弯曲和角速度的时间)等整体运动参数的损害相吻合。施用Mtz后,多巴胺水平暂时降低。通过7 dpf观察到一些运动参数的恢复。但是,即使有证据表明可以产生新的表达dat的细胞,表达dat的神经元的总数在7、12或14 dpf时仍会减少。 Tg(dat:CFP-NTR)斑马鱼提供了一个模型,将改变的多巴胺能神经元数量与运动功能相关,并研究影响多巴胺能神经元再生的因素。

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