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首页> 外文期刊>Journal of Neurophysiology >Midbrain periaqueductal gray (PAG) inhibits nociceptive inputs to sacral dorsal horn nociceptive neurons through alpha2-adrenergic receptors.
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Midbrain periaqueductal gray (PAG) inhibits nociceptive inputs to sacral dorsal horn nociceptive neurons through alpha2-adrenergic receptors.

机译:中脑导水管周围灰色(PAG)通过alpha2肾上腺素能受体抑制no背痛伤害性神经元的伤害性输入。

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摘要

Modulation of sacral spinal dorsal horn neurons by the ventrolateral PAG was studied by extracellular recording combined with microiontophoretic applications of alpha-adrenergic agonists or antagonists. Bicuculline (BIC, 15 ng) microinjected into the ventrolateral PAG produced a consistent inhibition of the responses of nociceptive dorsal horn neurons. After PAG-BIC applications, the total number of spikes per heat stimulation period was significantly decreased to a mean of 37 +/- 19% (n = 8) of the pre-BIC control. Local iontophoresis of the selective alpha2-adrenoceptor antagonists idazoxan or yohimbine but not the selective alpha1 antagonist benoxathian significantly reversed PAG-BIC-evoked inhibition. At low ejection currents, clonidine, an alpha2-adrenoceptor agonist, markedly reduced noxious heat-evoked responses but had no consistent action on the responses to iontophoresed excitatory amino acids [EAA; N-methyl--aspartate (NMDA) or kainic acid]. At ejection currents higher than required to block descending inhibition, idazoxan potentiated responses to both heat and EAA iontophoresis. At higher ejection currents, EAA responses were inhibited by clonidine. This indicates that both presynaptic and postsynaptic alpha2 receptors are capable of inhibiting the recorded neurons. Activation of the alpha1 adrenoceptors by iontophoresis of methoxamine often led to a marked increase in the responses to kainic acid and, to a lesser extent, to NMDA iontophoresis or noxious heat. Together with previously reported work, the current experiments demonstrate that PAG neurons inhibit nociceptive dorsal horn neurons primarily through an indirect alpha2 adrenoceptor mechanism. In this same population of dorsal horn neurons, norepinephrine has a direct alpha1-mediated excitatory effect.
机译:腹侧PAG对ion神经脊髓背角神经元的调节作用是通过细胞外记录结合α-肾上腺素能激动剂或拮抗剂的微离子电渗疗法来研究的。腹侧PAG微注射双cuculline(BIC,15 ng)产生了对伤害性背角神经元反应的一致抑制作用。在应用PAG-BIC后,每个热刺激周期的峰值总数显着减少,达到了BIC前对照的平均值的37 +/- 19%(n = 8)。选择性α2-肾上腺素受体拮抗剂伊达唑烷或育亨宾的局部离子电渗疗法,而不是选择性α1拮抗剂贝诺沙星的局部离子电渗疗法显着逆转了PAG-BIC诱发的抑制作用。在低喷射电流下,可乐定(一种α2-肾上腺素受体激动剂)显着减少了有害的热诱发反应,但对离子电渗兴奋性氨基酸的反应没有一致的作用[EAA; N-天门冬氨酸甲酯(NMDA)或海藻酸]。在高于阻止下降抑制所需的喷射电流时,依达唑烷可增强对热和EAA离子电渗疗法的响应。在较高的喷射电流下,可乐定抑制了EAA反应。这表明突触前和突触后α2受体都能够抑制记录的神经元。通过甲氧胺的离子电渗疗法激活α1肾上腺素受体通常会导致对海藻酸的反应显着增加,并在较小程度上引起对NMDA离子电渗疗法或有毒热的反应。与先前报道的工作一起,当前的实验表明,PAG神经元主要通过间接的α2肾上腺素能受体机制抑制伤害性背角神经元。在同样的背角神经元群体中,去甲肾上腺素具有直接的α1介导的兴奋作用。

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