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Descending projections from the nucleus accumbens shell excite activity of taste-responsive neurons in the nucleus of the solitary tract in the hamster

机译:伏伏核壳的下降投射激发仓鼠孤立道核中味觉响应神经元的活性

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摘要

The nucleus of the solitary tract (NST) and the parabrachial nuclei (PbN) are the first and second relays in the rodent central taste pathway. A series of electrophysiological experiments revealed that spontaneous and taste-evoked activities of brain stem gustatory neurons are altered by descending input from multiple forebrain nuclei in the central taste pathway. The nucleus accumbens shell (NAcSh) is a key neural substrate of reward circuitry, but it has not been verified as a classical gustatory nucleus. A recent in vivo electrophysiological study demonstrated that the NAcSh modulates the spontaneous and gustatory activities of hamster pontine taste neurons. In the present study, we investigated whether activation of the NAcSh modulates gustatory responses of the NST neurons. Extracellular single-unit activity was recorded from medullary neurons in urethane-anesthetized hamsters. After taste response was confirmed by delivery of sucrose, NaCl, citric acid, and quinine hydrochloride to the anterior tongue, the NAcSh was stimulated bilaterally with concentric bipolar stimulating electrodes. Stimulation of the ipsilateral and contralateral NAcSh induced firings from 54 and 37 of 90 medullary taste neurons, respectively. Thirty cells were affected bilaterally. No inhibitory responses or antidromic invasion was observed after NAcSh activation. In the subset of taste cells tested, high-frequency electrical stimulation of the NAcSh during taste delivery enhanced taste-evoked neuronal firing. These results demonstrate that two-thirds of the medullary gustatory neurons are under excitatory descending influence from the NAcSh, which is a strong indication of communication between the gustatory pathway and the mesolimbic reward pathway.
机译:啮齿动物中央味觉通路中的孤立道(NST)和臂臂旁核(PbN)是第一和第二中继。一系列电生理实验表明,脑干味觉神经元的自发性和味觉活动通过中央味觉通路中多个前脑核的递减输入而改变。伏伏核壳(NAcSh)是奖励电路的关键神经基质,但尚未被验证为经典味觉核。最近的体内电生理研究表明,NAcSh调节仓鼠脑桥味神经元的自发和味觉活动。在本研究中,我们调查了NAcSh的激活是否调节NST神经元的味觉反应。氨基甲酸乙酯麻醉的仓鼠的髓质神经元记录了细胞外单单位活性。通过向前舌输送蔗糖,NaCl,柠檬酸和盐酸奎宁确认味觉响应后,用同心双极刺激电极双向刺激NAcSh。刺激同侧和对侧NAcSh分别从90个髓样味神经元中的54个和37个触发放电。双边有三十个细胞受到影响。 NAcSh激活后未观察到抑制反应或抗病菌入侵。在测试的味觉细胞子集中,味觉传递过程中NAcSh的高频电刺激增强了味觉诱发的神经元放电。这些结果表明,三分之二的髓样味觉神经元受到NAcSh的兴奋性递减影响,这是味觉味觉通路与中脑边缘奖励途径之间交流的有力指示。

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