首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Compound K, a metabolite of ginsenosides, facilitates spontaneous GABA release onto CA3 pyramidal neurons.
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Compound K, a metabolite of ginsenosides, facilitates spontaneous GABA release onto CA3 pyramidal neurons.

机译:化合物K是人参皂甙的代谢产物,可促进自发GABA释放到CA3锥体神经元上。

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摘要

Ginsenoside Rb1, a major ingredient of ginseng saponins, can affect various brain functions, including learning and memory. When ingested orally, ginsenoside Rb1 is not found in plasma as well as urine, but its metabolite compound K (ComK) reaches the systemic circulation in animals and human. Nevertheless, the pharmacological actions of ComK are still poorly known. In the present study, we investigated the effect of ComK on GABAergic spontaneous miniature inhibitory post-synaptic currents (mIPSCs) in acutely isolated rat hippocampal CA3 pyramidal neurons using a conventional whole-cell patch-clamp technique. While ComK significantly increased mIPSC frequency in a concentration-dependent manner, it had no effect on the current amplitude, suggesting that ComK acts pre-synaptically to increase the probability of spontaneous GABA release. ComK still increased mIPSC frequency even in a Ca(2+) -free external solution, suggesting that the ComK-induced increase spontaneous GABA release is not related to Ca(2+) influx from the extracellular space. However, the ComK-induced increase mIPSC frequency was significantly decreased after the blockade of either sarcoplasmic/endoplasmic reticulum Ca(2+) -ATPase or Ca(2+) release channels. These results strongly suggest that ComK enhances spontaneous GABA release by increasing intraterminal Ca(2+) concentration via Ca(2+) release from pre-synaptic Ca(2+) stores. The ComK-induced modulation of inhibitory transmission onto CA3 pyramidal neurons could have a broad impact on the excitability of CA3 pyramidal neurons and affect the physiological functions mediated by the hippocampus.
机译:人参皂甙Rb1是人参皂苷的主要成分,可影响各种大脑功能,包括学习和记忆。口服时,人参皂甙Rb1在血浆和尿液中均未发现,但其代谢物K(ComK)到达了动物和人类的全身循环。尽管如此,ComK的药理作用仍知之甚少。在本研究中,我们使用常规的全细胞膜片钳技术研究了ComK对急性分离的大鼠海马CA3锥体神经元中GABA能自发微型抑制突触后电流(mIPSC)的影响。尽管ComK以浓度依赖的方式显着提高了mIPSC频率,但它对电流幅度没有影响,这表明ComK先突触地起作用以增加自发GABA释放的可能性。即使在无Ca(2+)的外部解决方案中,ComK仍会增加mIPSC频率,这表明ComK诱导的自发GABA释放增加与Ca(2+)从细胞外空间流入无关。但是,肌浆网/内质网Ca(2 +)-ATPase或Ca(2+)释放通道被封锁后,ComK诱导的增加的mIPSC频率显着降低。这些结果强烈建议ComK通过增加从突触前Ca(2+)存储的Ca(2+)释放,通过增加终端内Ca(2+)的浓度来增强自发GABA的释放。 ComK诱导的对CA3锥体神经元抑制传递的调节可能对CA3锥体神经元的兴奋性产生广泛影响,并影响海马介导的生理功能。

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