University College London, Gower Street, Department of Neuroscience, Physiology and Pharmacology, London, WC1E 6BT, UK.
University College London, Gower Street, Department of Neuroscience, Physiology and Pharmacology, London, WC1E 6BT, UK.
Neuropharmacology. 2018 Dec;143:29-37. doi: 10.1016/j.neuropharm.2018.09.028. Epub 2018 Sep 18.
Descending brainstem control of spinal nociceptive processing permits a dynamic and adaptive modulation of ascending sensory information. Chronic pain states are frequently associated with enhanced descending excitatory drive mediated predominantly through serotonergic neurones in the rostral ventromedial medulla. In this study, we examine the roles of spinal 5-HT and 5-HT receptors in modulating ascending sensory output in normal and neuropathic states. In vivo electrophysiology was performed in anaesthetised spinal nerve ligated (SNL) and sham-operated rats to record from wide dynamic range neurones in the ventral posterolateral thalamus. In sham rats, block of spinal 5-HTRs with ondansetron revealed tonic facilitation of noxious punctate mechanical stimulation, whereas blocking 5-HTRs with ketanserin had minimal effect on neuronal responses to evoked stimuli. The inhibitory profiles of both drugs were altered in SNL rats; ondansetron additionally inhibited neuronal responses to lower intensity punctate mechanical stimuli and noxious heat evoked responses, whereas ketanserin inhibited innocuous and noxious evaporative cooling evoked responses. Neither drug had any effect on dynamic brush evoked responses nor on spontaneous firing rates in both sham and SNL rats. These data identify novel modality and intensity selective facilitatory roles of spinal 5-HT and 5-HT receptors on sensory neuronal processing within the spinothalamic-somatosensory cortical pathway.
下行脑干对脊髓伤害性处理的控制允许上行感觉信息的动态和适应性调节。慢性疼痛状态常与增强的下行兴奋性驱动有关,主要通过延髓头端腹内侧区的 5-羟色胺能神经元介导。在这项研究中,我们研究了脊髓 5-HT 和 5-HT 受体在调节正常和神经病理性状态下上行感觉输出中的作用。在麻醉的脊神经结扎(SNL)和假手术大鼠中进行体内电生理学,以记录来自腹后外侧丘脑的宽动态范围神经元。在假手术大鼠中,用昂丹司琼阻断脊髓 5-HTRs 显示出对有害点状机械刺激的紧张性易化,而用酮色林阻断 5-HTRs 对神经元对诱发刺激的反应影响很小。这两种药物的抑制谱在 SNL 大鼠中发生了变化;昂丹司琼还抑制了对低强度点状机械刺激和有害热诱发反应的神经元反应,而酮色林抑制了无害和有害蒸发冷却诱发反应。这两种药物都没有对动态刷诱发反应或在假手术和 SNL 大鼠中的自发放电率产生任何影响。这些数据确定了脊髓 5-HT 和 5-HT 受体在伤害感受性神经元处理中的新型模态和强度选择性促进作用,在脊髓丘脑感觉皮质通路中。