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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Capsaicin induces theta-band synchronization between gustatory and autonomic insular cortices
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Capsaicin induces theta-band synchronization between gustatory and autonomic insular cortices

机译:辣椒素诱导味觉和自主神经岛皮层之间的θ带同步

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In the insular cortex, the primary gustatory area caudally adjoins the primary autonomic area that is involved in visceral sensory-motor integration. However, it has not been addressed whether neural activity in the gustatory insula (Gu-I) is coordinated with that in the autonomic insula (Au-I). We have demonstrated that TRPV1 activation in Gu-I induces theta-band synchronization between Gu-I and Au-I in rat slice preparations. Electron-microscopic immunohistochemistry revealed that TRPV1 immunoreactivity was much higher in Gu-I than in Au-I, and was mostly detected in dendritic spines receiving asymmetrical synapses. Whole-cell voltage-clamp recordings revealed that, in Gu-I, capsaicin-induced currents in layer 3 (L3) pyramidal cells (PCs) displayed no apparent desensitization, while those in layer 5 (L5) PCs displayed Ca 2+-dependent desensitization, suggesting that L3 and L5 PCs respond differentially to TRPV1 activation. Voltage-sensitive dye imaging demonstrated that TRPV1 activation in Gu-I can alter an optical response with a monophasic and columnar temporospatial pattern evoked within Gu-I into an oscillatory one extending over Gu-I and Au-I. Power and cross-power spectral analyses of optical responses revealed theta-band synchronization between Gu-I and Au-I. Whole-cell current-clamp recordings demonstrated that such theta-band waves were mediated by sustained rhythmic firings at 4 and 8 Hz in L3 and L5 PCs, respectively. These results strongly suggested that theta-band oscillatory neural coordination between Gu-I and Au-I was induced by two distinct TRPV1-mediated theta-rhythm firings in L3 and L5 PCs in Gu-I. This network coordination induced by TRPV1 activation could be responsible for autonomic responses to tasting and ingesting spicy foods.
机译:在岛状皮层中,主要的味觉区尾部邻接内脏感觉运动整合的主要植物区。然而,尚未解决味觉岛(Gu-I)中的神经活动是否与自主神经岛(Au-1)中的神经活动相协调。我们已经证明,Gu-I中的TRPV1激活诱导了大鼠切片制剂中Gu-I和Au-I之间的θ带同步。电子显微镜免疫组化显示,GuI中的TRPV1免疫反应性比Au-I中的高得多,并且大多数在接受不对称突触的树突棘中检测到。全细胞电压钳记录显示,在Gu-I中,辣椒素诱导的第3层(L3)锥体细胞(PC)中的电流未表现出明显的脱敏性,而在第5层(L5)中,辣椒素诱导的电流中却表现出Ca 2+依赖性脱敏,表明L3和L5 PC对TRPV1激活的反应不同。电压敏感染料成像表明,Gu-I中的TRPV1激活可以改变在Gu-I中诱发的单相和柱状颞os骨模式的光学响应,使其延伸到Gu-I和Au-I之上的振荡模式。光学响应的​​功率和跨功率光谱分析揭示了Gu-I和Au-I之间的θ带同步。全细胞电流钳记录表明,这种θ带电波分别由L3和L5 PC中以4 Hz和8 Hz的持续有节奏的触发来介导。这些结果强烈表明,在Gu-1中的L3和L5 PC中,两个不同的TRPV1介导的theta-thirthing触发了Gu-1和Au-1之间的θ带振荡神经配位。 TRPV1激活引起的这种网络协调可能是对品尝和摄入辛辣食物的自主反应的原因。

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