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抑制NKCC1可减弱大鼠海马长时程增强的形成及抑制性回避。

Inhibition of NKCC1 attenuated hippocampal LTP formation and inhibitory avoidance in rat.

作者信息

Ko Meng Chang, Lee Min Chong, Amstislavskaya Tamara G, Tikhonova Maria A, Yang Yi-Ling, Lu Kwok-Tung

机构信息

Department of Life Science, National Taiwan Normal University, Taipei, Taiwan.

Laboratory of Biological Psychiatry, State Research Institute of Physiology and Fundamental Medicine SB RAMS, Novosibirsk, Russia.

出版信息

PLoS One. 2014 Nov 4;9(11):e106692. doi: 10.1371/journal.pone.0106692. eCollection 2014.

Abstract

The loop diuretic bumetanide (Bumex) is thought to have antiepileptic properties via modulate GABAA mediated signaling through their antagonism of cation-chloride cotransporters. Given that loop diuretics may act as antiepileptic drugs that modulate GABAergic signaling, we sought to investigate whether they also affect hippocampal function. The current study was performed to evaluate the possible role of NKCC1 on the hippocampal function. Brain slice extracellular recording, inhibitory avoidance, and western blot were applied in this study. Results showed that hippocampal Long-term potentiation was attenuated by suprafusion of NKCC1 inhibitor bumetanide, in a dose dependent manner. Sequent experiment result showed that Intravenous injection of bumetanide (15.2 mg/kg) 30 min prior to the training session blocked inhibitory avoidance learning significantly. Subsequent control experiment's results excluded the possible non-specific effect of bumetanide on avoidance learning. We also found the phosphorylation of hippocampal MAPK was attenuated after bumetanide administration. These results suggested that hippocampal NKCC1 may via MAPK signaling cascade to possess its function.

摘要

袢利尿剂布美他尼(Bumex)被认为具有抗癫痫特性,其通过拮抗阳离子 - 氯离子共转运体来调节GABAA介导的信号传导。鉴于袢利尿剂可能作为调节GABA能信号传导的抗癫痫药物,我们试图研究它们是否也会影响海马功能。本研究旨在评估NKCC1对海马功能的可能作用。本研究采用脑片细胞外记录、抑制性回避和蛋白质印迹法。结果表明,NKCC1抑制剂布美他尼的超融合以剂量依赖的方式减弱了海马长时程增强。后续实验结果表明,在训练前30分钟静脉注射布美他尼(15.2mg/kg)显著阻断了抑制性回避学习。随后的对照实验结果排除了布美他尼对回避学习可能的非特异性作用。我们还发现布美他尼给药后海马MAPK的磷酸化减弱。这些结果表明,海马NKCC1可能通过MAPK信号级联来发挥其功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9dd/4219661/a8319e4f9a2e/pone.0106692.g001.jpg

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