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大鼠背角 C 传入纤维的皮质前突触控制。

Cortical presynaptic control of dorsal horn C-afferents in the rat.

机构信息

Departamento de Neurobiología del Desarrollo y Neurofisiología, Instituto de Neurobiología, Universidad Nacional Autónoma de México, Campus UNAM-Juriquilla, Querétaro, México.

出版信息

PLoS One. 2013 Jul 30;8(7):e69063. doi: 10.1371/journal.pone.0069063. Print 2013.

Abstract

Lamina 5 sensorimotor cortex pyramidal neurons project to the spinal cord, participating in the modulation of several modalities of information transmission. A well-studied mechanism by which the corticospinal projection modulates sensory information is primary afferent depolarization, which has been characterized in fast muscular and cutaneous, but not in slow-conducting nociceptive skin afferents. Here we investigated whether the inhibition of nociceptive sensory information, produced by activation of the sensorimotor cortex, involves a direct presynaptic modulation of C primary afferents. In anaesthetized male Wistar rats, we analyzed the effects of sensorimotor cortex activation on post tetanic potentiation (PTP) and the paired pulse ratio (PPR) of dorsal horn field potentials evoked by C-fiber stimulation in the sural (SU) and sciatic (SC) nerves. We also explored the time course of the excitability changes in nociceptive afferents produced by cortical stimulation. We observed that the development of PTP was completely blocked when C-fiber tetanic stimulation was paired with cortex stimulation. In addition, sensorimotor cortex activation by topical administration of bicuculline (BIC) produced a reduction in the amplitude of C-fiber responses, as well as an increase in the PPR. Furthermore, increases in the intraspinal excitability of slow-conducting fiber terminals, produced by sensorimotor cortex stimulation, were indicative of primary afferent depolarization. Topical administration of BIC in the spinal cord blocked the inhibition of C-fiber neuronal responses produced by cortical stimulation. Dorsal horn neurons responding to sensorimotor cortex stimulation also exhibited a peripheral receptive field and responded to stimulation of fast cutaneous myelinated fibers. Our results suggest that corticospinal inhibition of nociceptive responses is due in part to a modulation of the excitability of primary C-fibers by means of GABAergic inhibitory interneurons.

摘要

第 5 层感觉运动皮层的锥体神经元投射到脊髓,参与调节多种信息传递方式。皮质脊髓投射调节感觉信息的一个研究得很好的机制是初级传入纤维去极化,它已在快速肌和皮肤纤维中得到描述,但不在慢传导的伤害性皮肤传入纤维中得到描述。在这里,我们研究了感觉运动皮层的激活是否通过直接对 C 初级传入纤维的突触前调制来抑制伤害性感觉信息。在麻醉的雄性 Wistar 大鼠中,我们分析了感觉运动皮层激活对后强直刺激后增强(PTP)和坐骨神经(SC)中比目鱼肌(SU)和 SC 神经中 C 纤维刺激诱发的背角场电位的成对脉冲比(PPR)的影响。我们还探讨了皮层刺激引起的伤害性传入纤维兴奋性变化的时间过程。我们观察到,当 C 纤维强直刺激与皮层刺激配对时,PTP 的发展完全被阻断。此外,通过局部给予毒蕈碱(BIC)激活感觉运动皮层会导致 C 纤维反应幅度减小,以及 PPR 增加。此外,感觉运动皮层刺激引起的慢传导纤维末梢脊髓内兴奋性增加表明存在初级传入纤维去极化。脊髓内局部给予 BIC 可阻断皮层刺激产生的 C 纤维神经元反应的抑制。对感觉运动皮层刺激有反应的背角神经元也表现出外周感受野,并对快速皮肤有髓纤维的刺激有反应。我们的结果表明,皮质脊髓对伤害性反应的抑制部分是由于 GABA 能抑制性中间神经元对初级 C 纤维兴奋性的调制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2ab/3728294/160a01825235/pone.0069063.g001.jpg

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