首页> 外文期刊>European Journal of Pharmacology: An International Journal >Involvement of sigma receptors in the modulation of the glutamatergic/NMDA neurotransmission in the dopaminergic systems.
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Involvement of sigma receptors in the modulation of the glutamatergic/NMDA neurotransmission in the dopaminergic systems.

机译:σ受体参与多巴胺能系统中谷氨酸能/ NMDA神经传递的调节。

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摘要

Extracellular single-unit recordings and iontophoresis were used to examine the effects of different selective sigma receptor ligands on dopaminergic and glutamatergic N-methyl-D-aspartate (NMDA) neurotransmissions both in origin (A10 and A9 areas) and terminal (nucleus accumbens and caudate nucleus) regions of the rat mesolimbic and nigrostriatal dopaminergic systems. The selective sigma1 receptor ligands 2-[4-(4-methoxy-benzyl)piperazin-1-yl-methyl]4-oxo[4H]-benzo-th iazolin-2-one (S-21377), systemically administered (1.2 mg/kg, i.v., cumulative dose), and 2[(4-benzyl piperazin-1-yl) mothyl] naphthalene, dichiorydrate (S-21378), iontophoretically applied, slightly increased the spontaneous firing rate and potentiated the NMDA-induced neuronal activation of dopaminergic neurons in the A9 and A10 regions. (+)N-cyclopropylmethyl-N-methyl-1,4-diphenyl-1-ethyl-butyl-2-N (JO-1784), another selective sigma1 receptor ligand produced no or little effect in these areas. The systemic administration of the selective sigma2 receptor ligand 1,4-bis-spiro[isobenzofuran-1(3H), 4'-piperidin-1'yl]butane (Lu 29-252) (2 mg/kg, i.v., cumulative dose) did not modify the firing activity of A9 and A10 dopaminergic neurons, but significantly potentiated the NMDA-induced increase in firing activity of A10 dopaminergic neurons. None of the sigma receptor ligands tested had any effects on the dopamine-induced suppression of firing. In the nucleus accumbens, the systemic administration of (JO-1784), (40 microg/kg, i.v.), (+)-pentazocine (30 microg/kg, i.v.), another selective sigma1 receptor ligand, and of the non selective sigma1 receptor ligand di-tolyl-guanidine (DTG) (20 microg/i.v.) produced a significant increase of NMDA-induced neuronal activation. Microiontophoretic applications of JO-1784 also potentiated the NMDA response. They also increased significantly the suppressant effect of dopamine on NMDA and kainate-induced activations of accumbens neurons. In the caudate nucleus, (+)-pentazocine, but not JO-1784, potentiated slightly the neuronal response to NMDA. None of the sigma receptor ligands tested did modify significantly the responses of caudate and accumbens neurons to kainate. These findings suggest that at least two subtypes of sigma1 receptors may affect differentially the glutamate NMDA neurotransmission in the terminal and origin regions of the mesolimbic and nigrostriatal dopaminergic systems. These results also demonstrate the existence of a functional interaction between sigma2 and NMDA receptors in the A10 region.
机译:细胞外单单位录音和离子电渗疗法用于检查不同的选择性sigma受体配体对起源(A10和A9区)和末梢(伏核和尾状核)多巴胺能和谷氨酸能N-甲基-D-天冬氨酸(NMDA)神经传递的影响大鼠中脑边缘和黑质纹状体多巴胺能系统的核区。全身使用的选择性sigma1受体配体2- [4-(4-甲氧基-苄基)哌嗪-1-基-甲基] 4-氧代[4H]-苯并噻唑啉-2-酮(S-21377)毫克/千克,静脉注射,累积剂量)和​​2 [(4-苄基哌嗪-1-基)甲基]萘,双碘酸盐(S-21378),通过离子电渗疗法应用,可稍微提高自发放电速度并增强NMDA诱导的神经元在A9和A10区域激活多巴胺能神经元。 (+)N-环丙基甲基-N-甲基-1,4-二苯基-1-乙基-丁基-2-N(JO-1784),另一种选择性sigma1受体配体,在这些区域几乎没有产生作用。选择性sigma2受体配体1,4-双-螺[异苯并呋喃-1(3H),4'-哌啶-1'基]丁烷(Lu 29-252)的全身给药(2 mg / kg,静脉内,累积剂量)未改变A9和A10多巴胺能神经元的放电活性,但显着增强了NMDA诱导的A10多巴胺能神经元的放电活性增加。测试的所有sigma受体配体均未对多巴胺诱导的射击抑制产生任何影响。在伏伏核中,全身性施用(JO-1784),(40 microg / kg,iv),(+)-喷他佐辛(30 microg / kg,iv),另一种选择性sigma1受体配体和非选择性sigma1受体配体二甲苯基胍(DTG)(20 microg / iv)大大增加了NMDA诱导的神经元活化。 JO-1784的微离子电泳应用也增强了NMDA反应。它们还显着提高了多巴胺对NMDA的抑制作用和海藻酸盐诱导的伏伏神经元活化。在尾状核中,(+)-喷他佐辛而不是JO-1784稍微增强了对NMDA的神经元反应。测试的所有sigma受体配体均未显着改变尾状和伏隔神经元的神经元的响应。这些发现表明,至少两种亚型的sigma1受体可能会影响中边缘和黑质纹状体多巴胺能系统的末端和起源区域的谷氨酸NMDA神经传递。这些结果还证明了A10区sigma2和NMDA受体之间存在功能相互作用。

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