Maurer Konrad, Bostock Hugh, Koltzenburg Martin
UCL Institute of Child Health, UCL, 30 Guilford St., London WC1N 1 EH, United Kingdom.
Clin Neurophysiol. 2007 Nov;118(11):2404-12. doi: 10.1016/j.clinph.2007.08.009. Epub 2007 Sep 25.
To establish an in vitro model for measurement of the excitability properties of cutaneous sensory axons.
We used a saphenous skin-nerve preparation from adult rat in combination with computerized threshold tracking. We measured strength-duration time constant, the recovery of excitability after a supramaximal stimulus and the accommodation to conditioning subthreshold polarizing stimuli (threshold electrotonus, current-threshold relationship) and compared these with previously published recordings from sensory axons in human median nerve.
Threshold electrotonus and the amplitude of superexcitability were indistinguishable between human median nerve in vivo and rat saphenous nerve in vitro, but several excitability parameters were significantly different in the rat: strength-duration time constant was significantly shorter (0.19+/-0.01 vs. 0.53+/-0.02 ms); the refractory period was shorter (1.9+/-1.1 ms vs. 3.5+/-1.0 ms) and late subexcitability was smaller (6.3+/-0.3% vs. 11.3+/-0.5%); thirdly, during recording of current-threshold relationship, rat nerves displayed more inward rectification to strong hyperpolarizing currents. Parameters were stable over more than 3h.
Excitability changes of sensory Abeta-fibres can be reliably studied in the rat in vitro and are qualitatively similar to humans.
This rat model will facilitate pharmacological studies of nerve excitability and work on models of neuropathy.
建立一种用于测量皮肤感觉轴突兴奋性特性的体外模型。
我们使用成年大鼠的隐神经-皮肤标本,并结合计算机化阈值跟踪技术。我们测量了强度-时间常数、超强刺激后兴奋性的恢复以及对阈下极化条件刺激的适应性(阈下电紧张、电流-阈值关系),并将这些结果与先前发表的人类正中神经感觉轴突记录进行比较。
体内人类正中神经和体外大鼠隐神经的阈下电紧张和超兴奋性幅度无明显差异,但大鼠的几个兴奋性参数存在显著差异:强度-时间常数明显更短(0.19±0.01对0.53±0.02毫秒);不应期更短(1.9±1.1对3.5±1.0毫秒),后期亚兴奋性更小(6.3±0.3%对11.3±0.5%);第三,在记录电流-阈值关系时,大鼠神经对强超极化电流表现出更多的内向整流。参数在超过3小时内保持稳定。
感觉Aβ纤维的兴奋性变化可以在大鼠体外可靠地进行研究,并且在性质上与人类相似。
该大鼠模型将有助于神经兴奋性的药理学研究以及神经病变模型的研究。