...
首页> 外文期刊>Neurobiology of disease >Seizures in the developing brain result in a long-lasting decrease in GABA(B) inhibitory postsynaptic currents in the rat hippocampus.
【24h】

Seizures in the developing brain result in a long-lasting decrease in GABA(B) inhibitory postsynaptic currents in the rat hippocampus.

机译:发育中的大脑中的癫痫发作导致大鼠海马中GABA(B)抑制性突触后电流长期持续减少。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Whether seizures in the developing brain cause long-term changes in the mature brain has been debated. We tested the hypothesis that a model of early-life seizures, induced by systemic injection of a GABA(B) receptor antagonist CGP56999A in immature rats, decreased GABA(B) receptor-mediated inhibitory postsynaptic currents (IPSCs) in the hippocampus of adolescent rats. Whole-cell recordings were made in CA1 pyramidal cells and dentate gyrus (DG) granule cells in vitro, 30-45 days after the rats had seizures induced by CGP56999A (1-1.5 mg/kg i.p.) or control saline injection on postnatal day 15. GABA(B) receptor-mediated IPSCs were reduced in DG neurons but not in CA1 neurons of early-life seizure rats as compared to controls. Additionally, hippocampal neurons of early-life seizure rats, as compared to those in control rats, showed a more depolarized resting membrane potential in both CA1 and DG, and a larger input resistance but reduced spike frequency adaptation in DG neurons. In conclusion, early-life seizures result in a long-lasting reduction in GABA(B) receptor-mediated transmission in DG principal neurons and depolarization in CA1 and DG principal neurons. These alterations are expected to increase seizure susceptibility in the adult brain.
机译:大脑发育中的癫痫发作是否会引起成熟大脑的长期变化一直存在争议。我们测试了以下假设:在未成熟大鼠中全身注射GABA(B)受体拮抗剂CGP56999A诱导的早期发作性癫痫模型降低了青春期大鼠海马中GABA(B)受体介导的突触后抑制电流(IPSC)的减少。在大鼠出生后第15天由CGP56999A(1-1.5 mg / kg ip)或对照盐水注射引起的癫痫发作后30-45天,在CA1锥体细胞和齿状回(DG)颗粒细胞中进行全细胞体外记录与早期对照组相比,早期癫痫发作大鼠的DG神经元中的GABA(B)受体介导的IPSCs减少,但CA1神经元中的GABA(B)受体的IPSCs并未减少。此外,与对照组相比,早期发作的癫痫大鼠的海马神经元在CA1和DG中均表现出更多的去极化静息膜电位,并且输入电阻较大,但DG神经元的突跳频率适应性降低。总之,早期发作会导致DG主要神经元中GABA(B)受体介导的传递长期减少,而CA1和DG主要神经元中出现去极化。预计这些改变会增加成人大脑中的癫痫发作敏感性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号