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孤啡肽受体配体孤啡肽对大鼠中脑导水管周围灰质神经元膜特性的体外作用。

Actions of the ORL1 receptor ligand nociceptin on membrane properties of rat periaqueductal gray neurons in vitro.

作者信息

Vaughan C W, Ingram S L, Christie M J

机构信息

Department of Pharmacology, University of Sydney, New South Wales, Australia.

出版信息

J Neurosci. 1997 Feb 1;17(3):996-1003. doi: 10.1523/JNEUROSCI.17-03-00996.1997.

Abstract

The actions of the endogenous ORL1-receptor ligand nociceptin on the membrane properties and synaptic currents in rat periaqueductal gray (PAG) neurons were examined by the use of whole-cell patch-clamp recording in brain slices. Nociceptin produced an outward current in all neurons tested, with an EC50 of 39 +/- 7 nM. The outward current was unaffected by naloxone. Outward currents reversed polarity at -110 +/- 3 mV in 2.5 mM extracellular potassium, and the reversal potential increased when the extracellular potassium concentration was raised (slope = 66.3 mV/log[K+]o mM). Thus, the nociceptin-induced outward current was attributable to an increased K+ conductance. Nociceptin inhibited evoked fast GABAergic (IP-SCs) and glutamatergic (EPSCs) postsynaptic currents and increased paired-pulse facilitation in a subpopulation of PAG neurons. Nociceptin inhibited evoked IPSCs and EPSCs in approximately 50% of neurons throughout the PAG, except in the ventrolateral PAG, where nociceptin inhibited evoked IPSCs in most neurons. Nociceptin decreased the frequency of spontaneous miniature postsynaptic currents (mIPSCs and mEPSCs) in a subpopulation of PAG neurons but had no effect on their amplitude distributions. Thus, nociceptin had a presynaptic inhibitory effect on transmitter release. These findings suggest that nociceptin, via its pre- and postsynaptic actions, has the potential to modulate the analgesic, behavioral, and autonomic functions of the PAG.

摘要

运用脑片全细胞膜片钳记录技术,研究了内源性孤啡肽受体配体孤啡肽对大鼠中脑导水管周围灰质(PAG)神经元膜特性和突触电流的作用。孤啡肽在所有测试神经元中均产生外向电流,其半数有效浓度(EC50)为39±7 nM。该外向电流不受纳洛酮影响。在2.5 mM细胞外钾浓度条件下,外向电流在-110±3 mV处发生极性反转,当细胞外钾浓度升高时,反转电位增加(斜率 = 66.3 mV/log[K+]o mM)。因此,孤啡肽诱导的外向电流归因于钾离子电导增加。孤啡肽抑制诱发的快速γ-氨基丁酸能(IPSCs)和谷氨酸能(EPSCs)突触后电流,并增加PAG神经元亚群中的双脉冲易化。除了腹外侧PAG外,孤啡肽在整个PAG中约50%的神经元中抑制诱发的IPSCs和EPSCs,在腹外侧PAG中,孤啡肽在大多数神经元中抑制诱发的IPSCs。孤啡肽降低了PAG神经元亚群中自发微小突触后电流(mIPSCs和mEPSCs)的频率,但对其幅度分布没有影响。因此,孤啡肽对递质释放具有突触前抑制作用。这些发现表明,孤啡肽通过其突触前和突触后作用,有可能调节PAG的镇痛、行为和自主功能。

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