首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Expression and Function of Transient Receptor Potential Ankyrin 1 Ion Channels in the Caudal Nucleus of the Solitary Tract
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Expression and Function of Transient Receptor Potential Ankyrin 1 Ion Channels in the Caudal Nucleus of the Solitary Tract

机译:短暂受体尾核中瞬时受体电位锚蛋白1离子通道的表达和功能

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摘要

The nucleus of the solitary tract (NTS) receives visceral information via the solitary tract (ST) that comprises the sensory components of the cranial nerves VII, IX and X. The Transient Receptor Potential Ankyrin 1 (TRPA1) ion channels are non-selective cation channels that are expressed primarily in pain-related sensory neurons and nerve fibers. Thus, TRPA1 expressed in the primary sensory afferents may modulate the function of second order NTS neurons. This hypothesis was tested and confirmed in the present study using acute brainstem slices and caudal NTS neurons by RT-PCR, immunostaining and patch-clamp electrophysiology. The expression of TRPA1 was detected in presynaptic locations, but not the somata of caudal NTS neurons that did not express TRPA1 mRNA or proteins. Moreover, caudal NTS neurons did not show somatodendritic responsiveness to TRPA1 agonists, while TRPA1 immunostaining was detected only in the afferent fibers. Electrophysiological recordings detected activation of presynaptic TRPA1 in glutamatergic terminals synapsing on caudal NTS neurons evidenced by the enhanced glutamatergic synaptic neurotransmission in the presence of TRPA1 agonists. The requirement of TRPA1 for modulation of spontaneous synaptic activity was confirmed using TRPA1 knockout mice where TRPA1 agonists failed to alter synaptic efficacy. Thus, this study provides the first evidence of the TRPA1-dependent modulation of the primary afferent inputs to the caudal NTS. These results suggest that the second order caudal NTS neurons act as a TRPA1-dependent interface for visceral noxious-innocuous integration at the level of the caudal brainstem.
机译:孤立道(NTS)的核通过孤立道(ST)接收内脏信息,该信息包括颅神经VII,IX和X的感觉成分。瞬时受体电位锚蛋白1(TRPA1)离子通道是非选择性阳离子通道主要在疼痛相关的感觉神经元和神经纤维中表达。因此,在初级感觉传入中表达的TRPA1可能会调节二阶NTS神经元的功能。在本研究中,使用急性脑干切片和尾部NTS神经元通过RT-PCR,免疫染色和膜片钳电生理学对该假设进行了测试和证实。在突触前位置检测到TRPA1的表达,但未表达TRPA1 mRNA或蛋白质的尾部NTS神经元的体细胞未检测到。此外,尾部NTS神经元未显示出对TRPA1激动剂的躯体树突状反应,而TRPA1免疫染色仅在传入纤维中检测到。电生理记录检测到,在存在TRPA1激动剂的情况下,增强的谷氨酸能突触神经传递可证明突触前TRPA1在尾部NTS神经元上突触的谷氨酸能末端中的激活。使用TRPA1敲除小鼠证实了TRPA1调节自发突触活性的要求,其中TRPA1激动剂未能改变突触功效。因此,这项研究提供了对尾神经NTS的主要传入输入的TRPA1依赖性调节的第一个证据。这些结果表明,二阶尾部NTS神经元在尾部脑干的水平上​​作为内脏有害无害整合的TRPA1依赖界面。

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