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神经降压素通过代谢型谷氨酸受体诱导的内源性大麻素信号传导对大鼠中脑导水管周围灰质的γ-氨基丁酸能传递的抑制作用

Neurotensin inhibition of GABAergic transmission via mGluR-induced endocannabinoid signalling in rat periaqueductal grey.

作者信息

Mitchell V A, Kawahara H, Vaughan C W

机构信息

Pain Management Research Institute, Northern Clinical School, University of Sydney at Royal North Shore Hospital, St Leonards, NSW, Australia.

出版信息

J Physiol. 2009 Jun 1;587(Pt 11):2511-20. doi: 10.1113/jphysiol.2008.167429. Epub 2009 Apr 9.

Abstract

Neurotensin modulates pain via its actions within descending analgesic pathways which include brain regions such as the midbrain periaqueductal grey (PAG). The aim of this study was to examine the cellular actions of neurotensin on PAG neurons. Whole cell patch clamp recordings were made from rat midbrain PAG slices in vitro to examine the postsynaptic effects of neurotensin and its effects on GABA(A) mediated inhibitory postsynaptic currents (IPSCs). Neurotensin (100-300 nM) produced an inward current in subpopulations of opioid sensitive and insensitive PAG neurons which did not reverse over membrane potentials between -50 and -130 mV. The neurotensin induced current was abolished by the NTS1 and NTS1/2 antagonists SR48692 (300 nM) and SR142948A (300 nM). Neurotensin also produced a reduction in the amplitude of evoked IPSCs, but had no effect on the rate and amplitude of TTX-resistant miniature IPSCs. The neurotensin induced inhibition of evoked IPSCs was reduced by the mGluR5 antagonist MPEP (5microM) and abolished by the cannabinoid CB(1) receptor antagonist AM251 (3 microM). These results suggest that neurotensin produces direct neuronal depolarisation via NTS1 receptors and inhibits GABAergic synaptic transmission within the PAG. The inhibition of synaptic transmission is mediated by neuronal excitation and action potential dependent release of glutamate, leading to mGluR5 mediated production of endocannabinoids which activate presynaptic CB(1) receptors. Thus, neurotensin has cellular actions within the PAG which are consistent with both algesic and analgesic activity, some of which are mediated via the endocannabinoid system.

摘要

神经降压素通过其在下传镇痛通路中的作用来调节疼痛,这些通路包括中脑导水管周围灰质(PAG)等脑区。本研究的目的是检测神经降压素对PAG神经元的细胞作用。采用体外大鼠中脑PAG脑片进行全细胞膜片钳记录,以检测神经降压素的突触后效应及其对GABA(A)介导的抑制性突触后电流(IPSCs)的影响。神经降压素(100 - 300 nM)在阿片类敏感和不敏感的PAG神经元亚群中产生内向电流,该电流在 - 50至 - 130 mV的膜电位范围内不会反转。神经降压素诱导的电流被NTS1和NTS1/2拮抗剂SR48692(300 nM)和SR142948A(300 nM)阻断。神经降压素还使诱发的IPSCs幅度降低,但对TTX抗性微小IPSCs的频率和幅度没有影响。神经降压素诱导的诱发IPSCs抑制作用被mGluR5拮抗剂MPEP(5μM)减弱,并被大麻素CB(1)受体拮抗剂AM251(3μM)阻断。这些结果表明,神经降压素通过NTS1受体产生直接的神经元去极化,并抑制PAG内的GABA能突触传递。突触传递的抑制是由神经元兴奋和动作电位依赖性谷氨酸释放介导的,导致mGluR5介导的内源性大麻素产生,进而激活突触前CB(1)受体。因此,神经降压素在PAG内具有与致痛和镇痛活性均相符的细胞作用,其中一些作用是通过内源性大麻素系统介导的。

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