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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Somatic Ca(2+) dynamics in response to choline-mediated excitation in histaminergic tuberomammillary neurons.
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Somatic Ca(2+) dynamics in response to choline-mediated excitation in histaminergic tuberomammillary neurons.

机译:体细胞Ca(2+)动力学响应胆碱介导的组胺能结核瘤神经元中的胆碱。

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Histaminergic tuberomammillary (TM) neurons of the posterior hypothalamus have been implicated in cognition, alertness and sleep-wakefulness cycles. Spontaneous firing of TM neurons has been associated with histamine release and wakefulness. The expression of alpha7 nicotinic acetylcholine receptors (nAChRs) in TM neurons suggests a role for endogenous choline and for nicotinic drugs in the regulation of intracellular Ca(2+) metabolism, normal TM neuronal activity and histamine release. First, we established the link between TM neuronal spontaneous firing frequency and cytosolic free Ca(2+) concentration ([Ca(2+)](i)). A strong correlation was observed: an onset of spontaneous firing (3-4Hz) was accompanied by a 20-fold increase in [Ca(2+)](i) from 56+/-18 nM to 1.0+/-0.6 microM. The same range of firing frequencies has been observed in TM neurons in vivo and is associated with wakefulness. Secondly, choline-induced activation of alpha7 nAChRs did not elevate [Ca(2+)](i) directly, i.e. in the absence of high-threshold voltage-gated Ca(2+) channel (HVGCC) activation. Cd(2+) (200 microM) completely blocked all Ca(2+) signals, but inhibited only 37+/-16% of alpha7 nAChR-mediated currents. Thirdly, the responsiveness of [Ca(2+)](i) to choline-mediated excitation was inhibited by hyperpolarization and enhanced by depolarization, sensitizing [Ca(2+)](i) at membrane voltages associated with normal TM neuronal activity. These properties of [Ca(2+)](i) define the ability of TM neurons to translate cholinergic stimuli of identical strengths into different cytosolic Ca(2+) effects, providing the physiological substrate for state-specific modulation of incoming cholinergic information and would be expected to play a very important role in determining activity profiles of TM neurons exposed to elevated concentrations of cholinergic agents, such as choline and nicotine.
机译:下丘脑后部的组胺能结核性(TM)神经元与认知,机敏性和睡眠-觉醒周期有关。 TM神经元的自发放电与组胺释放和清醒有关。 TM神经元中的α7烟碱乙酰胆碱受体(nAChRs)的表达表明内源性胆碱和烟碱药物在调节细胞内Ca(2+)代谢,正常TM神经元活性和组胺释放中的作用。首先,我们建立了TM神经元自发放电频率与胞浆游离Ca(2+)浓度([Ca(2 +)](i)之间的联系。观察到强相关性:自发放电(3-4Hz)伴随[Ca(2 +)](i)从56 +/- 18 nM增长20倍至1.0 +/- 0.6 microM。在体内TM神经元中观察到相同的激发频率范围,并且与觉醒有关。其次,胆碱诱导的alpha7 nAChRs的激活并没有直接升高[Ca(2 +)](i),即在没有高阈值电压门控Ca(2+)通道(HVGCC)激活的情况下。 Cd(2+)(200 microM)完全阻止了所有Ca(2+)信号,但仅抑制了37 +/- 16%的alpha7 nAChR介导的电流。第三,超极化抑制了[Ca(2 +)](i)对胆碱介导的兴奋的反应,而去极化增强了[Ca(2 +)](i),在与正常TM神经元活性相关的膜电压下使[Ca(2 +)](i)敏感。 [Ca(2 +)](i)的这些属性定义了TM神经元将相同强度的胆碱能刺激翻译成不同的胞质Ca(2+)效应的能力,为传入胆碱能信息的状态特定调制提供了生理学基础。在确定暴露于浓度较高的胆碱能药物(如胆碱和尼古丁)的TM神经元的活动概况方面,有望发挥重要作用。

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