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中脑多巴胺神经元的相位性刺激可减少盐的摄取。

Phasic Stimulation of Midbrain Dopamine Neuron Activity Reduces Salt Consumption.

机构信息

MRC London Institute of Medical Sciences (LMS), London W12 0NN, United Kingdom.

Institute of Clinical Sciences (ICS), Faculty of Medicine, Imperial College London, London W12 0NN, United Kingdom.

出版信息

eNeuro. 2018 May 15;5(2). doi: 10.1523/ENEURO.0064-18.2018. eCollection 2018 Mar-Apr.

Abstract

Salt intake is an essential dietary requirement, but excessive consumption is implicated in hypertension and associated conditions. Little is known about the neural circuit mechanisms that control motivation to consume salt, although the midbrain dopamine system, which plays a key role in other reward-related behaviors, has been implicated. We, therefore, examined the effects on salt consumption of either optogenetic excitation or chemogenetic inhibition of ventral tegmental area (VTA) dopamine neurons in male mice. Strikingly, optogenetic excitation of dopamine neurons decreased salt intake in a rapid and reversible manner, despite a strong salt appetite. Importantly, optogenetic excitation was not aversive, did not induce hyperactivity, and did not alter salt concentration preferences in a need-free state. In addition, we found that chemogenetic inhibition of dopamine neurons had no effect on salt intake. Lastly, optogenetic excitation of dopamine neurons reduced consumption of sucrose following an overnight fast, suggesting a more general role of VTA dopamine neuron excitation in organizing motivated behaviors.

摘要

盐的摄入量是基本的饮食需求,但过量摄入与高血压和相关疾病有关。尽管中脑多巴胺系统在其他与奖励相关的行为中起着关键作用,但控制摄入盐的动机的神经回路机制知之甚少。因此,我们研究了光遗传刺激或化学遗传抑制雄性小鼠腹侧被盖区(VTA)多巴胺神经元对盐摄入量的影响。惊人的是,尽管盐的食欲很强,但多巴胺神经元的光遗传刺激还是以快速和可逆的方式减少了盐的摄入。重要的是,光遗传刺激并不令人厌恶,不会引起过度活跃,也不会改变在无需求状态下对盐浓度的偏好。此外,我们发现化学遗传抑制多巴胺神经元对盐的摄入量没有影响。最后,多巴胺神经元的光遗传刺激减少了夜间禁食后蔗糖的消耗,这表明 VTA 多巴胺神经元的兴奋在组织动机行为方面具有更普遍的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7025/5952649/b56dafeb3aa0/enu0021826040001.jpg

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