The in vitro hemisected spinal cord from young rat was used to inve'/> Modulation of afferent-evoked neurotransmission by 5-HT3 receptors in young rat dorsal horn neurones in vitro: a putative mechanism of 5-HT3 induced anti-nociception
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Modulation of afferent-evoked neurotransmission by 5-HT3 receptors in young rat dorsal horn neurones in vitro: a putative mechanism of 5-HT3 induced anti-nociception

机译:5-HT 3受体对年轻大鼠背角神经元的传入传入神经传递的调节:5-HT 3诱导的抗伤害感受的推测机制

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摘要

class="enumerated" style="list-style-type:decimal">The in vitro hemisected spinal cord from young rat was used to investigate the mechanism of serotoninergic modulation of primary afferent-mediated synaptic transmission in the dorsal horn through activation of the 5-HT3 receptor.Dorsal root-evoked excitatory post-synaptic potentials (DR-EPSPs) were recorded intracellularly from dorsal horn neurones. Extracellular recordings of the population primary afferent depolarization (PAD) and the dorsal rootevoked dorsal root reflex (DR-DRR) were made from segmental dorsal roots.5-Hydroxytryptamine (5-HT) and the selective 5-HT3 receptor agonist 1-(m-chloro-phenyl)-biguanide hydrochloride (m-ChPB) (10 and 50 μM) induced statistically significant reductions of the DR-EPSP amplitude (P<0.001) and duration (P<0.001) in the majority of dorsal horn neurones. The 5-HT3 receptor selective antagonists 3-Tropanyl-indole-3-carboxylate hydrochloride (Tropisetron, 10 μM) and N-(1-Azabicyclo[2.2.2]oct-3-yl)-6-chloro-4-methyl-3-oxo-3,4-dihydro-2H-1,4-benzoxazine-8-carboxamide (Y-25130, 10 μM) abolished m-ChPB-induced DR-EPSP attenuation and partially blocked the 5-HT effect.m-ChPB (50 μM)-induced DR-EPSP amplitude and duration attenuation was retained in the presence of the GABAA receptor antagonist bicuculline (30 μM), the GABAB receptor antagonist saclofen (50 μM) and the opioid receptor antagonist naloxone (50 μM).Both 5-HT and m-ChPB (10 and 50 μM) induced a PAD but the mean peak amplitude of 5-HT-induced PAD was significantly greater than PAD to m-ChPB (98.6±12 μV compared to 51.8±10 μV for 50 μM of agonist, respectively). Tropisetron partially reduced 5-HT-induced PAD and abolished m-ChPB-induced PAD. 5-HT, but not m-ChPB, significantly (P<0.001) reduced the peak amplitude of the DR-DRR and this action of 5-HT was unaffected by Tropisetron or Y-25130.These data provide experimental evidence for a putative cellular mechanism at the level of the dorsal horn for anti-nociceptive effects of 5-HT3 receptor activation. This 5-HT3-mediated modulation of sensory afferent transmission was evidently independent of inhibitory GABA- or opioid-dependent interneuronal pathways. The extent to which the 5-HT3 receptor could be involved in the operation of endogenous analgesia and sensory modulation by descending monoamine bulbo-spinal pathways is discussed.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 用离体幼鼠半断脊髓研究5-羟色胺能通过激活5-HT3受体调节背角初级传入介导的突触传递的机制。 背根诱发兴奋性从背角神经元细胞内记录突触后电位(DR-EPSPs)。从节段背根制作细胞初级传入去极化(PAD)和背根诱发的背根反射(DR-DRR)的细胞外记录。 5-羟色胺(5-HT)和选择性5-羟色胺HT3受体激动剂1-(间氯苯基)-双胍盐酸盐(m-ChPB)(10和50μm)诱导DR-EPSP振幅(P <0.001)和持续时间(P <0.001)的统计学显着降低。背角神经元多数。 5-HT3受体选择性拮抗剂3-Tropanyl-吲哚-3-羧酸盐盐酸盐(Tropisetron,10μm)和N-(1-Azabicyclo [2.2.2] oct-3-yl)-6-chloro-4-methyl- 3-氧代-3,4-二氢-2H-1,4-苯并恶嗪-8-羧酰胺(Y-25130,10μm)消除了m-ChPB诱导的DR-EPSP衰减并部分阻止了5-HT的作用。 li> li> m-ChPB(50μm)诱导的DR-EPSP幅度和持续时间衰减在存在GABAA受体拮抗剂双小分子(30μm),GABAB受体拮抗剂saclofen(50μm)和阿片受体的情况下得以保留拮抗剂纳洛酮(50μM)。 5-HT和m-ChPB(10和50μM)均可诱导PAD,但5-HT诱导的PAD的平均峰幅度明显大于PAD至m -ChPB(98.6±12μV,而50μM的激动剂分别为51.8±10μV)。 Tropisetron部分降低了5-HT诱导的PAD,废除了m-ChPB诱导的PAD。 5-HT而不是m-ChPB显着(P <0.001)降低了DR-DRR的峰值幅度,并且5-HT的这一作用不受Tropisetron或Y-25130的影响。 这些数据为5-HT3受体激活的抗伤害感受作用的背角水平的推测细胞机制提供实验证据。 5-HT3介导的感觉传入传递的调节显然独立于抑制性GABA或阿片样物质依赖的神经内通路。讨论了5-HT3受体通过单胺球根-脊髓途径的下降参与内源性镇痛和感觉调节的程度。

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