评论"Accumbens胆固醇内部神经元动态促进多巴胺释放,并使激励成为可能"
James Taniguchi1, Riccardo Melani1, Lynne Chantranupong2
1Neuroscience Institute and Fresco Institute for Parkinson's and Movement Disorders, University Grossman School of Medicine, New York, United States.
蓝光人为地激活RdLight1传感器,模仿多巴胺释放. 这挑战了先前在活体中对乙胆诱导的多巴胺释放的发现,这表明在使用这种传感器与光遗传学一起使用时需要谨慎.
科学领域:
- 神经科学是一个神经科学.
- 神经化学 神经化学
背景情况:
- 乙胆被认为可以调节哺乳动物条体中的多巴胺释放.
- 实验室研究证实,胆固醇内部神经元的激活驱动通过尼古丁受体释放多巴胺.
研究的目的:
- 为了研究乙胆诱导的多巴胺释放的体内机制.
- 为了验证最近的发现,表明胆固醇内部神经元的光遗传激活在老鼠中引起多巴胺释放.
主要方法:
- 在清醒,行为良好的老鼠中,光遗传刺激条状胆固醇内部神经元.
- 使用红移光传感器RdLight1.1,测量多巴胺释放的程度.
- 控制实验评估仅蓝光对RdLight1光效应的影响.
主要成果:
- 仅仅暴露在蓝光下,就显著改变了RdLight1的光.
- 这种光激活人工物可能被误解为多巴胺释放.
- 归因于胆性内神经元的观察到的效应是由这个人工物解释的.
结论:
- 使用RdLight1与光遗传学的多巴胺测量需要仔细解释,因为潜在的光激活工件.
- 在体内由乙胆引起的多巴胺释放的条件仍然不清楚.
- 需要进一步的研究来了解状体中的多巴胺调节.
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