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实验性神经病变中二级体感皮层刺激诱导的下行性镇痛:延髓脊髓5-羟色胺能通路的作用

Descending antinociception induced by secondary somatosensory cortex stimulation in experimental neuropathy: role of the medullospinal serotonergic pathway.

作者信息

Sagalajev Boriss, Viisanen Hanna, Wei Hong, Pertovaara Antti

机构信息

Department of Physiology, Faculty of Medicine, University of Helsinki, Helsinki, Finland.

Department of Physiology, Faculty of Medicine, University of Helsinki, Helsinki, Finland

出版信息

J Neurophysiol. 2017 Mar 1;117(3):1200-1214. doi: 10.1152/jn.00836.2016. Epub 2017 Jan 4.

Abstract

Stimulation of the secondary somatosensory cortex (S2) has attenuated pain in humans and inflammatory nociception in animals. Here we studied S2 stimulation-induced antinociception and its underlying mechanisms in an experimental animal model of neuropathy induced by spinal nerve ligation (SNL). Effect of S2 stimulation on heat-evoked limb withdrawal latency was assessed in lightly anesthetized rats that were divided into three groups based on prior surgery and monofilament testing before induction of anesthesia: ) sham-operated group and ) hypersensitive and ) nonhypersensitive (mechanically) SNL groups. In a group of hypersensitive SNL animals, a 5-HT receptor agonist was microinjected into the rostroventromedial medulla (RVM) to assess whether autoinhibition of serotonergic cell bodies blocks antinociception. Additionally, effect of S2 stimulation on pronociceptive ON-cells and antinociceptive OFF-cells in the RVM or nociceptive spinal wide dynamic range (WDR) neurons were assessed in anesthetized hypersensitive SNL animals. S2 stimulation induced antinociception in hypersensitive but not in nonhypersensitive SNL or sham-operated animals. Antinociception was prevented by a 5-HT receptor agonist in the RVM. Antinociception was associated with decreased duration of heat-evoked response in RVM ON-cells. In spinal WDR neurons, heat-evoked discharge was delayed by S2 stimulation, and this antinociceptive effect was prevented by blocking spinal 5-HT receptors. The results indicate that S2 stimulation suppresses nociception in SNL animals if SNL is associated with tactile allodynia-like hypersensitivity. In hypersensitive SNL animals, S2 stimulation induces antinociception mediated by medullospinal serotonergic pathways acting on the spinal 5-HT receptor, and partly through reduction of the RVM ON-cell discharge. Stimulation of S2 cortex, but not that of an adjacent cortical area, induced descending heat antinociception in rats with the spinal nerve ligation-induced model of neuropathy. Antinociception was bilateral, and it involved suppression of pronociceptive medullary cells and activation of serotonergic pathways that act on the spinal 5-HT receptor. S2 stimulation failed to induce descending antinociceptive effect in sham-operated controls or in nerve-ligated animals that had not developed mechanical hypersensitivity.

摘要

刺激次级体感皮层(S2)可减轻人类的疼痛以及动物的炎性伤害感受。在此,我们在脊髓神经结扎(SNL)诱导的神经病变实验动物模型中研究了S2刺激诱导的抗伤害感受及其潜在机制。在轻度麻醉的大鼠中评估S2刺激对热诱发肢体退缩潜伏期的影响,这些大鼠在麻醉诱导前根据先前手术和单丝测试分为三组:)假手术组和)超敏组以及)非超敏(机械性)SNL组。在一组超敏SNL动物中,将5-羟色胺(5-HT)受体激动剂微量注射到延髓头端腹内侧(RVM),以评估血清素能细胞体的自抑制是否会阻断抗伤害感受。此外,在麻醉的超敏SNL动物中评估S2刺激对RVM中促伤害感受性ON细胞和抗伤害感受性OFF细胞或伤害性脊髓广动力范围(WDR)神经元的影响。S2刺激在超敏SNL动物中诱导了抗伤害感受,但在非超敏SNL动物或假手术动物中未诱导。RVM中的5-HT受体激动剂可预防抗伤害感受。抗伤害感受与RVM ON细胞中热诱发反应的持续时间缩短有关。在脊髓WDR神经元中,S2刺激延迟了热诱发放电,并且通过阻断脊髓5-HT受体可预防这种抗伤害感受作用。结果表明,如果SNL与触觉异常性疼痛样超敏反应相关,则S2刺激可抑制SNL动物的伤害感受。在超敏SNL动物中,S2刺激诱导由作用于脊髓5-HT受体的延髓脊髓血清素能途径介导的抗伤害感受,并且部分通过减少RVM ON细胞放电来实现。在脊髓神经结扎诱导的神经病变模型大鼠中,刺激S2皮层而非相邻皮层区域可诱导下行性热抗伤害感受。抗伤害感受是双侧的,并且涉及抑制促伤害感受性髓质细胞和激活作用于脊髓5-HT受体的血清素能途径。S2刺激在假手术对照组或未发生机械性超敏反应的神经结扎动物中未能诱导下行性抗伤害感受作用。

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