首页> 美国卫生研究院文献>The Journal of Physiology >Presynaptic inhibitory action of enkephalin on excitatory transmission in superficial dorsal horn of rat spinal cord.
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Presynaptic inhibitory action of enkephalin on excitatory transmission in superficial dorsal horn of rat spinal cord.

机译:脑啡肽对大鼠脊髓浅背角兴奋性传递的突触前抑制作用。

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摘要

1. Tight-seal whole-cell recordings were made from marginal neurones visually identified in thin slices of 1- to 2-week-old rat lumbar spinal cord. Excitatory postsynaptic currents (EPSCs), either evoked by extracellular stimulation or those arising spontaneously in tetrodotoxin, i.e. miniature EPSCs (mEPSCs), were recorded after blocking inhibitory synaptic inputs with strychnine and bicuculline. 2. The EPSCs were abolished reversibly by kynurenic acid or 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) but not affected by (+)-2-amino-5-phosphonovalerate (APV), suggesting that they were mediated by non-NMDA (N-methyl-D-aspartate) glutamate receptors. Micromolar concentrations of methionine [Met5]enkephalin reversibly reduced the magnitude of evoked EPSCs and the frequency of mEPSCs. 3. The enkephalin action on the mEPSC frequency was blocked by naloxone. A specific agonist of mu-opiate receptor, [D-Ala2,N-Me-Phe4, Gly5]enkephalin-ol (DAGO) suppressed the mEPSC frequency. In contrast, neither a delta-opiate receptor agonist, [D-Pen2, L-Pen5]enkephalin (DPLPE) nor a kappa-opiate receptor agonist, (5 alpha, 7 alpha, 8 beta)-(-)-N-methyl-N-[7-(1-pyrrolidinyl)-1- oxaspiro(4,5)-dec-8-yl]benzeneacetamide (U-69,593) significantly affected the mEPSC frequency. 4. The amplitude of mEPSCs or of currents induced by exogenous L-glutamate, was not affected by [Met5]enkephalin. It is suggested that [Met5]enkephalin presynaptically inhibits glutamatergic EPSCs by activating the mu-opiate receptor. 5. The frequency of mEPSC was reduced by about 50% by replacement of external Ca2+ with Mg2+ or by addition of Cd2+. In Ca(2+)-free-Mg2+ solution, [Met5]enkephalin did not reduce the remaining mEPSCs' frequency any further. 6. It is concluded that the opiates may suppress presynaptic Ca2+ entry, thereby inhibiting synaptic transmission.
机译:1.紧密密封的全细胞记录是从1到2周大的大鼠腰脊髓薄片中通过视觉识别的边缘神经元制成的。记录了由鞘氨醇和双甲胆碱抑制抑制性突触输入后,由细胞外刺激引起的兴奋性突触后电流(EPSC),或在河豚毒素中自发产生的兴奋性突触后电流(mEPSC)。 2. EPSC被犬尿酸或6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)可逆地消除,但不受(+)-2-氨基-5-膦酸戊二酸酯(APV)的影响,表明它们是由非NMDA(N-甲基-D-天冬氨酸)谷氨酸受体介导。蛋氨酸[Met5]脑啡肽的微摩尔浓度可逆地降低诱发的EPSC的幅度和mEPSC的频率。 3.纳洛酮阻断了脑啡肽对mEPSC频率的作用。 mu阿片受体的特定激动剂[D-Ala2,N-Me-Phe4,Gly5]脑啡肽(DAGO)抑制了mEPSC频率。相反,既不是δ-鸦片受体激动剂[D-Pen2,L-Pen5]脑啡肽(DPLPE),也不是κ-鸦片受体激动剂(5α,7α,8β)-(-)-N-甲基-N- [7-(1-吡咯烷基)-1-氧杂螺(4,5)-dec-8-基]苯乙酰胺(U-69,593)显着影响mEPSC频率。 4. [Met5]脑啡肽不影响外源性L-谷氨酸诱导的mEPSC或电流的幅度。提示[Met5]脑啡肽通过激活μ鸦片受体来突触抑制谷氨酸能EPSC。 5.通过用Mg2 +代替外部Ca2 +或添加Cd2 +,可以将mEPSC的频率降低约50%。在无Ca(2 +)-Mg2 +溶液中,[Met5]脑啡肽没有进一步降低剩余mEPSC的频率。 6.结论是,鸦片剂可以抑制突触前Ca2 +的进入,从而抑制突触传递。

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