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在新生大鼠脊髓体外实验中,小口径传入输入对初级传入A纤维诱发的突触反应产生异突触易化作用。

Small-caliber afferent inputs produce a heterosynaptic facilitation of the synaptic responses evoked by primary afferent A-fibers in the neonatal rat spinal cord in vitro.

作者信息

Thompson S W, Woolf C J, Sivilotti L G

机构信息

Department of Anatomy and Developmental Biology, University College London, United Kingdom.

出版信息

J Neurophysiol. 1993 Jun;69(6):2116-28. doi: 10.1152/jn.1993.69.6.2116.

Abstract
  1. The effect of brief primary afferent inputs on the amplitude and duration of the synaptic potentials evoked in ventral horn (VH) neurons by the activation of other unconditioned primary afferents was studied by current-clamp intracellular recording in the neonatal rat hemisected spinal cord in vitro. Low-frequency (1 Hz) trains of stimulation were applied to a lumbar dorsal root (Conditioning root) for 20-30 s. Test excitatory synaptic potentials (EPSPs) were evoked by single electrical shocks applied to an adjacent Test dorsal root. 2. Test and Conditioning inputs were generated at stimulation strengths sufficient to activate A beta-, A delta- and C-afferent fibers successively. At A delta- and C-fiber strength the EPSPs lasted for 4-6 s, and, during the repetitive Conditioning inputs, these summated to produce a progressively incrementing cumulative depolarization that slowly decayed back to the control Vm over tens of seconds. 3. Dorsal root conditioning produced heterosynaptic facilitation, defined as an enhancement of Test EPSPs above their DC matched controls, in 7 out of 20 neurons. To facilitate the unconditioned afferent input, the intensity of conditioning stimulation had to exceed the threshold for the activation of thin myelinated (A delta) afferents: conditioning at A beta-fiber strength had no effect, whereas A delta- and C-fiber strength conditioning were equally effective. 4. Heterosynaptic facilitation of only A beta- or A delta-fiber-evoked Test EPSPs was observed, no enhancement of C-fiber strength Test EPSPs could be demonstrated. The facilitation manifested as increases in the EPSP peak amplitude, area or the number of action potentials evoked. 5. Conditioning trials that produced heterosynaptic facilitation generated cumulative depolarizations larger than those produced by ineffective conditioning trials (9.1 +/- 3.1 vs. 3.3 +/- 0.5 mV after 20 s conditioning at resting Vm, mean +/- SE, n = 6 and 13, respectively; P < 0.05). The slope of the Vm trajectory during the summation of the conditioning EPSPs was higher in trials resulting in heterosynaptic facilitation, at 0.31 +/- 0.10 mV/s in neurons with heterosynaptic facilitation and 0.06 +/- 0.02 mV/s in cells without heterosynaptic facilitation (P < 0.05). 5. Four of the 20 VH neurons in our sample responded to A delta/C-fiber conditioning with action-potential windup: all 4 also displayed heterosynaptic facilitation. 6. Heterosynaptic facilitation decayed after the completion of the conditioning stimulus with a time course that was parallel to but not superimposable on that of the slow Vm depolarization evoked by the conditioning.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用电流钳全细胞记录技术,在新生大鼠离体半横断脊髓上,研究了短暂的初级传入输入对其他非条件初级传入激活腹角(VH)神经元所诱发的突触电位的幅度和时程的影响。对腰段背根(条件刺激根)施加低频(1Hz)刺激串,持续20 - 30秒。对相邻的测试背根施加单次电刺激诱发测试兴奋性突触后电位(EPSP)。2. 测试和条件刺激输入在足以依次激活Aβ、Aδ和C传入纤维的刺激强度下产生。在Aδ和C纤维强度时,EPSP持续4 - 6秒,在重复性条件刺激输入期间,这些EPSP总和产生逐渐增加的累积去极化,并在数十秒内缓慢衰减回到对照膜电位(Vm)。3. 在20个神经元中的7个中,背根条件刺激产生了异突触易化,定义为测试EPSP高于其直流匹配对照的增强。为了易化非条件传入输入,条件刺激的强度必须超过薄髓鞘(Aδ)传入纤维激活的阈值:Aβ纤维强度的条件刺激无效,而Aδ和C纤维强度的条件刺激同样有效。4. 仅观察到Aβ或Aδ纤维诱发的测试EPSP的异突触易化,未证实C纤维强度测试EPSP的增强。易化表现为EPSP峰值幅度、面积或诱发动作电位数量的增加。5. 产生异突触易化的条件刺激试验产生的累积去极化大于无效条件刺激试验产生的累积去极化(静息Vm下20秒条件刺激后分别为9.1±3.1与3.3±0.5mV,平均值±标准误,n分别为6和13;P < 0.05)。在导致异突触易化的试验中,条件刺激EPSP总和期间Vm轨迹的斜率更高,在有易化的神经元中为0.31±0.10mV/s,在无易化的细胞中为0.06±0.02mV/s(P < 0.05)。5. 我们样本中的20个VH神经元中有4个对Aδ/C纤维条件刺激产生动作电位累加:这4个神经元也都表现出异突触易化。6. 条件刺激完成后,异突触易化衰减,其时程与条件刺激诱发的缓慢Vm去极化平行但不重叠。(摘要截断于400字)

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