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Characteristics of Rostral Solitary Tract Nucleus Neurons With Identified Afferent Connections That Project to the Parabrachial Nucleus in Rats

机译:大鼠前臂臂旁核中识别出传入连接的鼻部孤立性束核神经元的特征

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摘要

Afferent information derived from oral chemoreceptors is transmitted to second-order neurons in the rostral solitary tract nucleus (rNST) and then relayed to other CNS locations responsible for complex sensory and motor behaviors. Here we investigate the characteristics of rNST neurons sending information rostrally to the parabrachial nucleus (PBN). Afferent connections to these rNST-PBN projection neurons were identified by anterograde labeling of the chorda tympani (CT), glossopharyngeal (IX), and lingual (LV) nerves. We used voltage- and current-clamp recordings in brain slices to characterize the expression of both the transient A-type potassium current, IKA and the hyperpolarization-activated inward current, Ih, important determinants of neuronal repetitive discharge characteristics. The majority of rNST-PBN neurons express IKA, and these IKA-expressing neurons predominate in CT and IX terminal fields but were expressed in approximately half of the neurons in the LV field. rNST-PBN neurons expressing Ih were evenly distributed among CT, IX and LV terminal fields. However, expression patterns of IKA and Ih differed among CT, IX, and LV fields. IKA-expressing neurons frequently coexpress Ih in CT and IX terminal fields, whereas neurons in LV terminal field often express only Ih. After GABAA receptor block all rNST-PBN neurons responded to afferent stimulation with all-or-none excitatory synaptic responses. rNST-PBN neurons had either multipolar or elongate morphologies and were distributed throughout the rNST, but multipolar neurons were more often encountered in CT and IX terminal fields. No correlation was found between the biophysical and morphological characteristics of the rNST-PBN projection neurons in each terminal field.
机译:来自口腔化学感受器的传入信息被传输到鼻端孤立道核(rNST)中的二阶神经元,然后中继到其他负责复杂感觉和运动行为的CNS位置。在这里,我们研究了rNST神经元向臂臂旁核(PBN)信息传递信息的特征。与这些rNST-PBN投射神经元的传入连接是通过对鼓膜鼓膜(CT),舌咽(IX)和舌神经(LV)进行顺行标记来识别的。我们使用脑切片中的电压和电流钳记录来表征瞬时A型钾电流IKA和超极化激活的内向电流Ih的表达,这是神经元重复放电特征的重要决定因素。大多数rNST-PBN神经元表达IKA,而这些表达IKA的神经元在CT和IX末端场中占主导地位,但在LV场中约一半的神经元中表达。表达Ih的rNST-PBN神经元均匀分布在CT,IX和LV末端区域。但是,IKA和Ih的表达模式在CT,IX和LV字段之间有所不同。表达IKA的神经元通常在CT和IX末端区域共表达Ih,而在LV末端区域的神经元通常仅表达Ih。 GABA A受体阻滞后,所有rNST-PBN神经元对传入刺激均产生全或无兴奋性突触反应。 rNST-PBN神经元具有多极或细长形态,并分布在整个rNST中,但在CT和IX末端区域更常遇到多极神经元。在每个末端视野中,rNST-PBN投射神经元的生物物理和形态特征之间均未发现相关性。

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