通过孤束核向脑核发出粘液感觉信号

IF 4.2 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Stuart J. McDougall, Zhi Yi Ong, Rosa Heller, Anna Horton, Kimberly K. Thek, Eun A. Choi, Gavan P. McNally, Andrew J. Lawrence
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引用次数: 0

摘要

孤束核(NTS)接受直接的视觉迷走传入,从而驱动自律神经反射、神经内分泌功能并调节行为。NTS 神经元的一个亚群可投射到阿库仑核(NAc);然而,NTS-NAc 通路的功能仍然未知。我们在小鼠和/或大鼠身上结合使用了神经解剖追踪、切片电生理学和纤维光度测定法,以确定 NTS-NAc 神经元在视觉感觉网络中的位置。NTS-NAc 投射神经元主要位于 NTS 的内侧和尾部,TH 阳性占 54 ± 7%(小鼠)和 65 ± 3%(大鼠),代表 A2 NTS 细胞群。在水平脑干切片中,孤束(ST)刺激可诱发 NTS-NAc 投射神经元的兴奋性突触后电流(EPSC)。大多数神经元(75%)接收到低抖动、零失误的 EPSCs,这些 EPSCs 是单突触 ST 传入输入的特征,可将它们识别为初级感觉神经元的二阶神经元。然后,我们研究了小鼠和大鼠体内的 NTS-NAc 神经元是否对胆囊收缩素(CCK,20 μg/kg ip)有反应。令人惊讶的是,CCK 和生理盐水处理的小鼠体内激活的 NTS-NAc 细胞数量没有差异。在大鼠中,仅有 6% 的 NTS-NAc 细胞被 CCK 募集。由于NTS TH神经元是NAc去甲肾上腺素的主要来源,我们测量了NAc中去甲肾上腺素的释放,结果显示NAc去甲肾上腺素水平在线索诱导的奖赏检索中下降,但在足部冲击中没有下降。综合这些发现,我们认为来自视觉传入的高保真传入信息可以到达 NAc。这些信号可能与CCK敏感迷走神经传入无关,但可能与其他感觉和高阶输入信号相互作用,以调节习得的食欲行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Viscerosensory signalling to the nucleus accumbens via the solitary tract nucleus

Viscerosensory signalling to the nucleus accumbens via the solitary tract nucleus

The nucleus of the solitary tract (NTS) receives direct viscerosensory vagal afferent input that drives autonomic reflexes, neuroendocrine function and modulates behaviour. A subpopulation of NTS neurons project to the nucleus accumbens (NAc); however, the function of this NTS-NAc pathway remains unknown. A combination of neuroanatomical tracing, slice electrophysiology and fibre photometry was used in mice and/or rats to determine how NTS-NAc neurons fit within the viscerosensory network. NTS-NAc projection neurons are predominantly located in the medial and caudal portions of the NTS with 54 ± 7% (mice) and 65 ± 3% (rat) being TH-positive, representing the A2 NTS cell group. In horizontal brainstem slices, solitary tract (ST) stimulation evoked excitatory post-synaptic currents (EPSCs) in NTS-NAc projection neurons. The majority (75%) received low-jitter, zero-failure EPSCs characteristic of monosynaptic ST afferent input that identifies them as second order to primary sensory neurons. We then examined whether NTS-NAc neurons respond to cholecystokinin (CCK, 20 μg/kg ip) in vivo in both mice and rats. Surprisingly, there was no difference in the number of activated NTS-NAc cells between CCK and saline-treated mice. In rats, just 6% of NTS-NAc cells were recruited by CCK. As NTS TH neurons are the primary source for NAc noradrenaline, we measured noradrenaline release in the NAc and showed that NAc noradrenaline levels declined in response to cue-induced reward retrieval but not foot shock. Combined, these findings suggest that high-fidelity afferent information from viscerosensory afferents reaches the NAc. These signals are likely unrelated to CCK-sensitive vagal afferents but could interact with other sensory and higher order inputs to modulate learned appetitive behaviours.

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来源期刊
Journal of Neurochemistry
Journal of Neurochemistry 医学-神经科学
CiteScore
9.30
自引率
2.10%
发文量
181
审稿时长
2.2 months
期刊介绍: Journal of Neurochemistry focuses on molecular, cellular and biochemical aspects of the nervous system, the pathogenesis of neurological disorders and the development of disease specific biomarkers. It is devoted to the prompt publication of original findings of the highest scientific priority and value that provide novel mechanistic insights, represent a clear advance over previous studies and have the potential to generate exciting future research.
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