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Erythropoietin affects GABAergic transmission in hippocampal neurons in vitro

机译:促红细胞生成素在体外影响海马神经元的GABA能传递

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Erythropoietin is a potent regulator of erythropoiesis. It acts via the specific membrane receptor (EpoR). Erythropoietin is also known to be present in the central nervous system, and its concentration and the expression of EpoR change during development, which raises the possibility that this modulator might be involved in the regulation of neuronal functions in the developing brain. The GABAergic system undergoes profound changes during development and is particularly susceptible to modulation by endogenous factors. Therefore, we decided to investigate the impact of Epo on GABAergic transmission in hippocampal neurons developing in vitro. An analysis of miniature IPSCs (mIPSCs) revealed that a long-term treatment with Epo (48 or 72 h) resulted in a major acceleration of the decaying phase of these currents while the amplitude and current frequency remained unchanged. Interestingly, this effect was restricted to the youngest considered age group (6-8 DIV), indicating that Epomediated modulation of mIPSCs depends on the developmental stage of the neurons. We conclude that Epo may exert a modulatory action on GABAergic transmission in developing neural networks.
机译:促红细胞生成素是促红细胞生成的有效调节剂。它通过特定的膜受体(EpoR)起作用。促红细胞生成素也已知存在于中枢神经系统中,其浓度和EpoR的表达在发育过程中会发生变化,这增加了这种调节剂可能参与发育中大脑神经元功能的调节的可能性。 GABA能系统在发育过程中发生了深刻变化,特别容易受到内源性因素的调节。因此,我们决定研究Epo对体外发育的海马神经元GABA能传递的影响。对微型IPSC(mIPSC)的分析显示,长期使用Epo(48或72 h)处理会导致这些电流的衰减相位大大加速,而幅度和电流频率则保持不变。有趣的是,这种作用仅限于考虑最年轻的年龄组(6-8 DIV),这表明EIPS介导的mIPSC调节取决于神经元的发育阶段。我们得出结论,Epo可能在发展中的神经网络中对GABA能传递发挥调节作用。

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