首页> 外文期刊>American Journal of Physiology >Efferent projection from the bed nucleus of the stria terminalis suppresses activity of taste-responsive neurons in the hamster parabrachial nuclei.
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Efferent projection from the bed nucleus of the stria terminalis suppresses activity of taste-responsive neurons in the hamster parabrachial nuclei.

机译:来自终纹床核的传出投射抑制仓鼠臂旁核中味觉反应神经元的活动。

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摘要

Although the reciprocal projections between the bed nucleus of the stria terminalis (BNST) and the gustatory parabrachial nuclei (PbN) have been demonstrated neuroanatomically, there is no direct evidence showing that the projections from the PbN to the BNST carry taste information or that descending inputs from the BNST to the PbN modulate the activity of PbN gustatory neurons. A recent electrophysiological study has demonstrated that the BNST exerts modulatory influence on taste neurons in the nucleus of the solitary tract (NST), suggesting that the BNST may also modulate the activity of taste neurons in the PbN. In the present study, we recorded from 117 taste-responsive neurons in the PbN and examined their responsiveness to electrical stimulation of the BNST bilaterally. Thirteen neurons (11.1) were antidromically invaded from the BNST, mostly from the ipsilateral side (12 cells), indicating that a subset of taste neurons in the PbN project their axons to the BNST. The BNST stimulation induced orthodromic responses on most of the PbN neurons: 115 out of 117 (98.3), including all BNST projection units. This descending modulation on the PbN gustatory neurons was exclusively inhibitory. We also confirmed that activation of this efferent inhibitory projection from the BNST reduces taste responses of PbN neurons in all units tested. The BNST is part of the neural circuits that involve stress-associated feeding behavior. It is also known that brain stem gustatory nuclei, including the PbN, are associated with feeding behavior. Therefore, this neural substrate may be important in the stress-elicited alteration in ingestive behavior.
机译:尽管在神经解剖学上已经证明了终纹床核 (BNST) 和味觉臂旁核 (PbN) 之间的相互投射,但没有直接证据表明从 PbN 到 BNST 的投射携带味觉信息,或者从 BNST 到 PbN 的下降输入调节 PbN 味觉神经元的活动。最近的一项电生理学研究表明,BNST 对孤束核 (NST) 中的味觉神经元产生调节影响,这表明 BNST 也可能调节 PbN 中味觉神经元的活动。在本研究中,我们记录了 PbN 中 117 个味觉反应神经元,并检查了它们对双侧 BNST 电刺激的反应性。13 个神经元 (11.1%) 从 BNST 反向侵入,主要来自同侧(12 个细胞),表明 PbN 中味觉神经元的一个子集将其轴突投射到 BNST。BNST刺激诱导了大多数PbN神经元的正交反应:117个神经元中有115个(98.3%),包括所有BNST投射单元。这种对PbN味觉神经元的下行调节是完全抑制的。我们还证实,BNST的这种传出抑制投射的激活会降低所有测试单位中PbN神经元的味觉反应。BNST是涉及与压力相关的喂养行为的神经回路的一部分。众所周知,脑干味觉核(包括 PbN)与摄食行为有关。因此,这种神经底物在应激引起的摄取行为改变中可能很重要。

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