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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Hippocampal GABAergic transmission: a new target for adenosine control of excitability
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Hippocampal GABAergic transmission: a new target for adenosine control of excitability

机译:海马GABA能传递:腺苷控制兴奋性的新目标。

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Physiological network functioning in the hippocampus is dependent on a balance between glutamatergic cell excitability and the activity of diverse local circuit neurons that release the inhibitory neurotransmitter c-aminobutyric acid (GABA). Tuners of neuronal communication such as adenosine, an endogenous modulator of synapses, control hippocampal network operations by regulating excitability. Evidence has been recently accumulating on the influence of adenosine on different aspects of GABAergic transmission to shape hippocampal function. This review addresses how adenosine, through its high-affinity A(1) (A(1)R) and A(2A) receptors (A(2A)R), interferes with different GABA-mediated forms of inhibition in the hippocampus to regulate neuronal excitability. Adenosine-mediated modulation of phasic/tonic inhibitory transmission, of GABA transport mechanisms and its interference with other modulatory systems are discussed together with the putative implications for neuronal function in physiological and pathological conditions.
机译:海马中的生理网络功能取决于谷氨酸能细胞兴奋性与释放抑制性神经递质c-氨基丁酸(GABA)的各种局部回路神经元活性之间的平衡。神经元通讯调节器,如腺苷,一种突触的内源性调节剂,通过调节兴奋性来控制海马网络的运作。最近有越来越多的证据表明腺苷对GABA能传递影响海马功能形成的不同方面的影响。这篇评论解决了腺苷如何通过其高亲和力A(1)(A(1)R)和A(2A)受体(A(2A)R)干扰海马中不同GABA介导的抑制形式的调控神经元兴奋性。讨论了腺苷介导的相位/张力抑制传递,GABA转运机制的调节及其对其他调节系统的干扰,以及在生理和病理条件下对神经元功能的潜在影响。

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