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Diverse bitter stimuli elicit highly similar patterns of Fos-like immunoreactivity in the nucleus of the solitary tract

机译:不同的苦味刺激在孤束核中引起高度相似的Fos样免疫反应模式

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Previous studies have demonstrated that oral stimulation with quinine elicits Fos-like immunoreactivity in the first-order gustatory nucleus, the NST, with a different topographic distribution than sucrose or citric acid. However, it is unknown whether the quinine pattern is unique to this alkaloid or common across bitter stimuli with different chemical structures. Indeed, recent physiological experiments suggest that taste receptor cells and primary afferent neurons may exhibit selectivity for various bitter tastants. The present investigation compared the distribution of FLI in NST following stimulation with three bitter chemicals: QHCl, denatonium and propylthiouracil, stimuli that evoked Ca2+ currents in almost entirely different sets of receptor cells. The results demonstrate that the quinine pattern is not idiosyncratic but instead generalizes to the other two tastants. Although it remains possible that intermingled but different NST neurons are activated by these stimuli, these data suggest that a specialized region in the NST is preferentially involved in processing a common aspect of bitter tastants. In contrast to citric acid, quinine, denatonium and propylthiouracil all elicited vigorous oromotor rejection responses, consistent with our earlier hypothesis that the medial third of the NST may be an afferent trigger zone for oromotor rejection.
机译:先前的研究表明,奎宁口服刺激在一级味觉核(NST)中引起了Fos样免疫反应,其拓扑分布与蔗糖或柠檬酸不同。然而,奎宁模式对于这种生物碱是独特的还是在具有不同化学结构的苦味刺激中是共同的尚不清楚。实际上,最近的生理实验表明,味觉受体细胞和初级传入神经元可能对各种苦味剂表现出选择性。本研究比较了三种苦味药刺激后NST中FLI的分布:QHCl,地那铵和丙基硫氧嘧啶,这些刺激在几乎完全不同的受体细胞组中引起Ca2 +电流。结果表明,奎宁模式不是特异的,而是普遍适用于其他两种口味。尽管仍有可能通过这些刺激激活混杂但不同的NST神经元,但这些数据表明NST中的一个特殊区域优先参与了苦味剂的共同方面。与柠檬酸相反,奎宁,地那铵和丙基硫尿嘧啶均引起强烈的口运动排斥反应,这与我们之前的假设有关,即NST内侧的三分之一可能是口运动排斥的传入触发区。

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