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重复刺激诱导大鼠背角兴奋性突触传递增强:一项体外研究

Repetitive stimulation induced potentiation of excitatory transmission in the rat dorsal horn: an in vitro study.

作者信息

Jeftinija S, Urban L

机构信息

Department of Veterinary Anatomy and Neuroscience Program, Iowa State University, Ames 50011.

出版信息

J Neurophysiol. 1994 Jan;71(1):216-28. doi: 10.1152/jn.1994.71.1.216.

Abstract
  1. The effects of repetitive stimulation of primary afferents in lumbar dorsal roots on synaptic transmission in the dorsal horn (DH) were studied in a rat spinal cord slice-dorsal root ganglion (DRG)-peripheral nerve trunk preparation by the use of intracellular recording from neurons (n = 115) of the spinal dorsal horn (depth 147 +/- 139, mean +/- SD). All DH neurons were excited synaptically by electrical stimulation of the dorsal root or the peripheral nerve trunk. The electrical shocks were calibrated to produce activation either of large fibers (10-20 V, 0.02 ms) or the whole fiber population including unmyelinated afferents (supramaximal stimulus: > 35 V, 0.5 ms). Postsynaptic potentials induced by low intensity repetitive stimulation of primary afferents at frequencies below 5 Hz failed to produce a prolonged change in the resting membrane potential. In 97/115 DH neurons, slow excitatory postsynaptic potentials (EPSP)--evoked by high intensity low-frequency repetitive stimulation (0.1-2 Hz) of primary afferents--summated, producing a prolonged cumulative depolarization. In the remaining 18/115 DH neurons, high intensity low-frequency stimulation produced a cumulative hyperpolarizing response. 2. In 22 of 97 neurons that responded to high intensity repetitive stimulation with a cumulative depolarization, wind-up in the firing of action potentials was recorded. In all but two experiments, neurons that responded with wind-up to stimulation of one root responded with wind-up to stimulation of the adjacent dorsal root. In 14/22 wind-up neurons, the synaptic response to high intensity stimulation of primary afferents was composed of a short latency EPSP, followed by an inhibitory postsynaptic potential (IPSP), followed by a slow EPSP. The decrease of the amplitude and duration of the IPSP obtained during train stimulation did not seem to contribute to facilitation of transmission induced by repetitive stimulation. 3. The wind-up in firing of action potentials was followed by a prolonged potentiation of synaptic transmission in tetanized synapses. A test of other, adjacent primary afferents revealed that these synapses in the neurons in the superficial laminae had not undergone potentiation. This "synaptic specificity" of post-wind-up potentiation suggested that the mechanism for the induction of stimulation-dependent changes in the excitability of the DH neuron is presynaptic to the recorded-from neuron. 4. In a concentration of 0.5 microM and higher, tetrodotoxin (TTX) applied to sensory neurons selectively blocked action potentials in large myelinated primary afferents.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用细胞内记录法,在大鼠脊髓切片-背根神经节(DRG)-外周神经干标本中,研究了腰段背根初级传入纤维的重复刺激对背角(DH)突触传递的影响。记录了脊髓背角115个神经元(深度147±139,平均值±标准差)的细胞内电位。所有DH神经元均可通过电刺激背根或外周神经干引发突触兴奋。电刺激强度经校准,分别用以激活大纤维(10 - 20V,0.02ms)或包括无髓传入纤维在内的所有纤维群体(超强刺激:>35V,0.5ms)。初级传入纤维在低于5Hz频率下的低强度重复刺激所诱发的突触后电位,未能使静息膜电位产生持续变化。在115个DH神经元中的97个,初级传入纤维的高强度低频重复刺激(0.1 - 2Hz)诱发的慢兴奋性突触后电位(EPSP)发生总和,产生持续的累积去极化。在其余18/115个DH神经元中,高强度低频刺激产生累积超极化反应。2. 在97个对高强度重复刺激产生累积去极化反应的神经元中的第22个,记录到动作电位发放的wind-up现象。除两个实验外,对一个神经根刺激产生wind-up反应的神经元,对相邻背根刺激也产生wind-up反应。在14/22个wind-up神经元中,对初级传入纤维高强度刺激的突触反应由一个短潜伏期EPSP、随后一个抑制性突触后电位(IPSP)以及一个慢EPSP组成。串刺激期间IPSP的幅度和时程减小,似乎并非重复刺激诱导的传递易化的原因。3. 动作电位发放的wind-up之后,强直刺激的突触传递出现长时间增强。对其他相邻初级传入纤维的测试显示,浅层层神经元中的这些突触未出现增强。wind-up后增强的这种“突触特异性”提示,DH神经元兴奋性刺激依赖性变化的诱导机制位于记录神经元的突触前。4. 在浓度为0.5μM及更高时,应用于感觉神经元的河豚毒素(TTX)选择性阻断了大的有髓初级传入纤维的动作电位。(摘要截短于400字)

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