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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Striatal medium spiny neurons terminate in a distinct region in the lateral hypothalamic area and do not directly innervate orexin/hypocretin- or melanin-concentrating hormone-containing neurons.
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Striatal medium spiny neurons terminate in a distinct region in the lateral hypothalamic area and do not directly innervate orexin/hypocretin- or melanin-concentrating hormone-containing neurons.

机译:纹状体多刺神经元终止于下丘脑外侧区域的不同区域,并且不直接神经支配含orexin / hypocretin或melanin的激素。

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摘要

Neuronal circuits including medium spiny neurons (MSNs) in the nucleus accumbens (NAc) and melanin-concentrating hormone (MCH)-containing neurons in the lateral hypothalamic area (LHA) are hypothesized to play an important role in hedonic feeding. A reciprocal connection between NAc MSNs and MCH-containing neurons is proposed to form a neuronal circuit that is involved in hedonic feeding. Although NAc MSNs have been shown to receive projection from MCH-containing neurons, it is not known whether MCH-containing neurons in the LHA also receive direct inputs from NAc MSNs. Here, we developed a genetic approach that allows us to visualize almost all striatal MSNs including NAc MSNs. We demonstrate that striatal MSNs terminate in a distinct region within the anterior LHA, and that the terminal area of striatal MSNs in this region contains glutamatergic neurons and is distinctly separate from orexin/hypocretin- or MCH-containing neurons. These observations suggest that NAc MSNs do not directly innervate MCH-containing neurons, but may indirectly signal MCH-containing neurons via glutamatergic neurons in the anterior LHA.
机译:假定伏隔核(NAc)中的中棘神经元(MSNs)和下丘脑外侧区域(LHA)的含黑色素浓缩激素(MCH)的神经元在内的神经元回路在享乐喂养中起重要作用。提出了NAc MSN和含有MCH的神经元之间的相互连接,以形成参与享乐的神经元回路。尽管已显示NAc MSN可以接受来自含MCH的神经元的投射,但不知道LHA中的含MCH的神经元是否也可以接受来自NAc MSN的直接输入。在这里,我们开发了一种遗传方法,使我们可以可视化几乎所有的纹状体MSN,包括NAc MSN。我们证明,纹状体MSN终止于前LHA内的不同区域,并且纹状体MSN在该区域的末端区域包含谷氨酸能神经元,并且与含食欲素/促胰泌素或MCH的神经元明显分开。这些观察结果表明,NAc MSN并不直接神经支配含MCH的神经元,而是可以通过前LHA中的谷氨酸能神经元间接向含MCH的神经元发出信号。

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