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Human cerebrospinal fluid increases the excitability of pyramidal neurons in the in vitro brain slice

机译:人脑脊髓液会增加锥体神经元在体外脑切片中的兴奋性

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摘要

The composition of brain extracellular fluid is shaped by a continuous exchange of substances between the cerebrospinal fluid (CSF) and interstitial fluid. The CSF is known to contain a wide range of endogenous neuromodulatory substances, but their collective influence on neuronal activity has been poorly investigated. We show here that replacing artificial CSF (aCSF), routinely used for perfusion of brain slices in vitro, with human CSF (hCSF) powerfully boosts spontaneous firing of CA1, CA3 and layer 5 pyramidal neurons in the rat brain slice. CA1 pyramidal neurons in hCSF display lowered firing thresholds, more depolarized resting membrane potentials and reduced input resistance, mimicking properties of pyramidal neurons recorded in vivo. The increased excitability of CA1 pyramidal neurons was completely occluded by intracellular application of GTPS, suggesting that endogenous neuromodulators in hCSF act on G-protein coupled receptors to enhance excitability. We found no increase in spontaneous inhibitory synaptic transmission by hCSF, indicating a differential effect on glutamatergic and GABAergic neurons. Our findings highlight a previously unknown function of the CSF in promoting spontaneous excitatory activity, and may help to explain differences observed in the activity of pyramidal neurons recorded in vivo and in vitro.
机译:脑细胞外液的组成通过连续交换脑脊液(CSF)和间质液之间的性质。已知CSF含有各种内源性神经调节物质,但它们对神经元活性的集体影响较差。我们在这里展示替代人造CSF(ACSF),通常用于体外灌注脑切片,用人CSF(HCSF)有力地提高大鼠脑切片中的CA1,CA3和5层金字塔神经元的自发烧制。 CA1在HCSF中的金字塔神经元显示出降低的烧制阈值,更加去极化的静止膜电位和降低的输入电阻,模拟了在体内记录的金字塔神经元的性质。通过细胞内施用GTP完全封闭Ca1金字塔神经元的兴奋性增加,表明HCSF中的内源性神经调节剂在G蛋白偶联受体中提高兴奋性。我们发现HCSF的自发抑制突触传递没有增加,表明对谷氨酸和加巴糖苷神经元的差异效果。我们的研究结果突出了CSF在促进自发兴奋活动方面的先前未知功能,并且可以有助于解释在体内和体外记录的金字塔神经元的活动中观察到的差异。

著录项

  • 来源
    《The Journal of Physiology》 |2015年第1期|共13页
  • 作者单位

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Physiol S-40530 Gothenburg Sweden;

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Psychiat &

    Neurochem S-43180 Molndal Sweden;

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Physiol S-40530 Gothenburg Sweden;

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Physiol S-40530 Gothenburg Sweden;

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Clin Neurosci S-41345 Gothenburg Sweden;

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Psychiat &

    Neurochem S-43180 Molndal Sweden;

    Univ Gothenburg Inst Neurosci &

    Physiol Dept Physiol S-40530 Gothenburg Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

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