Meléndez-Gallardo J, Eblen-Zajjur A
Centro de Biofísica y Bioquímica del Instituto Venezolano de Investigaciones Científicas, IVIC, Caracas, Venezuela.
Centro de Biofísica y Neurociencia, CBN, Facultad de Ciencias de la Salud, Universidad de Carabobo, Valencia, Venezuela.
Neurol Sci. 2016 Sep;37(9):1491-7. doi: 10.1007/s10072-016-2613-y. Epub 2016 May 20.
Most of the endogenous pain modulation (EPM) involves the spinal dorsal horn (SDH). EPM including diffuse noxious inhibitory controls have been extensively described in oligoneuronal electrophysiological recordings but less attention had been paid to responses of the SDH neuronal population to heterotopic noxious stimulation (HNS). Spinal somatosensory-evoked potentials (SEP) offer the possibility to evaluate the neuronal network behavior, reflecting the incoming afferent volleys along the entry root, SDH interneuron activities and the primary afferent depolarization. SEP from de lumbar cord dorsum were evaluated during mechanical heterotopic noxious stimuli. Sprague-Dawley rats (n = 12) were Laminectomized (T10-L3). The sural nerve of the left hind paw was electrically stimulated (5 mA, 0.5 ms, 0.05 Hz) to induce lumbar SEP. The HNS (mechanic clamp) was applied sequentially to the tail, right hind paw, right forepaw, muzzle and left forepaw during sural stimulation. N wave amplitude decreases (-16.6 %) compared to control conditions when HNS was applied to all areas of stimulation. This effect was more intense for muzzle stimulation (-23.5 %). N wave duration also decreased by -23.6 %. HNS did not change neither the amplitude nor the duration of the P wave but dramatically increases the dispersion of these two parameters. The results of the present study strongly suggest that a HNS applied to different parts of the body is able to reduce the integrated electrical response of the SDH, suggesting that not only wide dynamic range neurons but many others in the SDH are modulated by the EPM.
大多数内源性疼痛调制(EPM)涉及脊髓背角(SDH)。包括弥散性伤害性抑制控制在内的EPM在单神经元电生理记录中已有广泛描述,但脊髓背角神经元群体对异位伤害性刺激(HNS)的反应却较少受到关注。脊髓体感诱发电位(SEP)为评估神经元网络行为提供了可能,它反映了沿传入神经根传入的神经冲动、脊髓背角中间神经元的活动以及初级传入去极化。在机械性异位伤害性刺激期间评估来自腰髓背侧的SEP。将12只Sprague-Dawley大鼠进行T10-L3椎板切除术。电刺激左后爪的腓肠神经(5 mA,0.5 ms,0.05 Hz)以诱发腰部SEP。在腓肠神经刺激期间,依次对尾巴、右后爪、右前爪、口鼻部和左前爪施加HNS(机械钳夹)。与对照条件相比,当对所有刺激区域施加HNS时,N波振幅降低(-16.6%)。这种效应在口鼻部刺激时更为明显(-23.5%)。N波持续时间也降低了-23.6%。HNS既没有改变P波的振幅也没有改变其持续时间,但显著增加了这两个参数的离散度。本研究结果强烈表明,对身体不同部位施加HNS能够降低脊髓背角的综合电反应,这表明不仅广动力范围神经元,脊髓背角中的许多其他神经元也受到EPM的调制。