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首页> 外文期刊>The Journal of Physiology >Quantitative dynamics and spatial profile of perisomatic GABAergic input during epileptiform synchronization in the CA1 hippocampus.
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Quantitative dynamics and spatial profile of perisomatic GABAergic input during epileptiform synchronization in the CA1 hippocampus.

机译:在CA1海马癫痫样同步过程中,过氧化物酶体GABA能输入的定量动力学和空间分布。

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Perisomatic GABAergic input appears spared or even increased in intractable temporal lobe epilepsy, and has been suggested to contribute to the generation of pathological discharges. Nevertheless, its degree of functional activity during epileptiform synchronization has not been thoroughly investigated. Thus, it remains unclear how structural preservation or loss of domain-specific GABAergic input may affect the network. Here, we have taken advantage of a model of epileptiform activity in vitro to quantify the charge transfer provided by perisomatic GABA(A) receptor-mediated input to CA1 pyramidal neurons during interictal-like bursts. By recording both firing in GABAergic interneurons and the charge transfer generated by unitary postsynaptic currents to target pyramidal cells, we have estimated the charge transfer that would be dynamically generated by the recruitment of the entire pool of perisomatic-targeting interneurons and the number of perisomatic-targeting interneurons that would be required to generate the experimentally observed GABAergic input. In addition, we have recorded and compared the dynamics and charge density of GABAergic input recorded at different membrane compartments such as the soma vs. the proximal dendrite. Our results suggest that GABA(A) receptor-mediated perisomatic input is massively activated during burst synchronization and that its kinetic properties and charge density are similar at the soma and proximal dendrite. These functional results match structural data published by other laboratories very well and strengthen the hypothesis that the potential preservation of perisomatic GABAergic input in intractable epilepsies may be a key factor in the generation of pathological network activity.
机译:在顽固性颞叶癫痫中,过高的GABA能量输入似乎可以避免甚至增加,并且已被建议有助于病理性放电的产生。但是,尚未充分研究其在癫痫样同步过程中的功能活性程度。因此,目前尚不清楚结构域GABA能输入的结构保存或丢失如何影响网络。在这里,我们利用了体外癫痫样活动模型来量化由间质性GABA(A)受体介导的输入提供的电荷转移,该输入是在发作间样爆发期间向CA1锥体神经元提供的。通过记录在GABA能性中枢神经元中的发射以及由单一突触后电流向靶锥体细胞产生的电荷转移,我们估计了通过募集整个靶向靶性中枢神经元的细胞和perisomatic-的数目动态地产生的电荷转移。靶向产生实验观察到的GABA能输入所需的中间神经元。此外,我们已经记录并比较了在不同的膜室(例如,体细胞与近端树突)记录的GABA能输入的动力学和电荷密度。我们的结果表明,GABA(A)受体介导的异源输入在猝发同步过程中被大量激活,其动力学特性和电荷密度在躯体和近端枝晶处相似。这些功能性结果与其他实验室发表的结构数据非常吻合,并加强了这样的假说:难治性癫痫病中可能会保留过氧化物酶体GABA能输入,这可能是病理网络活动产生的关键因素。

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