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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Adenosine: a mediator of interleukin-1beta-induced hippocampal synaptic inhibition.
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Adenosine: a mediator of interleukin-1beta-induced hippocampal synaptic inhibition.

机译:腺苷:白介素-1β诱导的海马突触抑制的介体。

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摘要

Interleukin-1 (IL-1) is a pleotrophic cytokine implicated in a variety of central activities, including fever, sleep, ischemic injury, and neuromodulatory responses, such as neuroimmune, and neuroendocrine interactions. Although accumulating evidence is available regarding the expression pattern of this cytokine, its receptors in the CNS, and its mechanistic profile under pathological levels, it is unclear whether this substance modulates central neurons under physiological concentrations. Further, in light of the functional and spatial overlap between the adenosine and IL-1 systems, it is not known whether these two systems are coupled. We report here that, in rat brain slices, brief application of sub-femtomolar IL-1beta causes a profound decrease of glutamate transmission, but not GABAergic inhibition, in hippocampal CA1 pyramidal neurons. This decrease by IL-1beta is prevented by pharmacological blockade of adenosine A1 receptors. In addition, we show that IL-1beta failed to suppress glutamate transmission at room temperature. Because the production and release of adenosine in the CNS is thought to be metabolically dependent, this observation suggests that one of the functions of IL-1beta is to increase the endogenous production of adenosine. Together, these data suggest for the first time that sub-femtomolar levels of IL-1 can effectively modulate glutamate excitation in hippocampal neurons via an adenosine-dependent mechanism.
机译:白细胞介素-1(IL-1)是一种肥大细胞因子,涉及多种中枢活动,包括发烧,睡眠,缺血性损伤和神经调节反应,例如神经免疫和神经内分泌相互作用。尽管在该细胞因子的表达模式,其在中枢神经系统中的受体及其在病理学水平下的机制概况方面有越来越多的证据,但尚不清楚该物质是否在生理浓度下调节中枢神经元。此外,鉴于腺苷和IL-1系统之间的功能和空间重叠,尚不清楚这两个系统是否耦合。我们在这里报告说,在大鼠脑切片中,短暂应用飞藻类IL-1β会导致海马CA1锥体神经元的谷氨酸传递大幅减少,但不会引起GABA抑制作用。 IL-1β的这种降低可通过药理学上阻断腺苷A1受体来阻止。此外,我们表明,IL-1β在室温下不能抑制谷氨酸的传递。因为中枢神经系统中腺苷的产生和释放被认为是代谢依赖性的,所以该观察结果提示IL-1β的功能之一是增加内源性腺苷的产生。总之,这些数据首次表明亚飞摩尔水平的IL-1可通过腺苷依赖性机制有效调节海马神经元中的谷氨酸激发。

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