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NBQX增强视网膜神经节细胞中NMDA电流的机制。

The mechanism by which NBQX enhances NMDA currents in retinal ganglion cells.

作者信息

Yu W, Miller R F

机构信息

Department of Physiology, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Brain Res. 1996 Feb 19;709(2):184-96. doi: 10.1016/0006-8993(95)01285-0.

Abstract

When the quinoxaline NBQX (2,3-dihydroxy-6-nitro-7-sulfamoylbenzo (F) quinoxaline), a KA/AMPA antagonist, is bath applied to the tiger salamander retina, a paradoxical action is evident in the light-evoked synaptic responses of ganglion cells: NBQX enhances excitatory synaptic currents at light onset observed under whole-cell voltage-clamp conditions in a perfused retinal slice preparation. This observation was surprising because synaptic inputs into ganglion cells that are mediated by KA/AMPA receptors are entirely blocked by NBQX. Thus, the NBQX-enhanced current is entirely mediated by NMDA receptors. The purpose of this study was to determine the mechanism(s) by which blocking KA/AMPA receptors appears to enhance NMDA currents. Using hyperosmotic sucrose stimulation to activate neurotransmitter release from the inner retina, we observed that NBQX augmented the sucrose-evoked response, suggesting that at least a component of this enhancement may reside in the inner retina. NBQX does not enhance NMDA currents activated by bath applied NMDA, demonstrating that the NBQX-induced enhancement does not result from modulation of NMDA receptors. Voltage-clamp studies, carried out at the appropriate holding potential, indicate that NBQX enhances glutamatergic transmission and reduces inhibitory inputs onto ganglion cells. In the presence of strychnine and picrotoxin, the NBQX-induced enhancement of NMDA currents is eliminated, suggesting that NBQX facilitates the expression of NMDA currents by a selective and partial reduction of inhibitory mechanisms. Additional studies suggest that part of the NMDA enhancement by NBQX is evident at the postsynaptic level, but a presynaptic component probably also participates, perhaps at the level of bipolar cell terminals. One way to account for this observation is to assume that a subpopulation of inhibitory amacrine cells requires KA/AMPA receptors exclusively for their synaptic activation: previous studies of sustained amacrine cells support this interpretation. Thus the NBQX-induced enhancement phenomenon may reflect a network-selective distribution of NMDA and KA/AMPA receptors among third-order neurons.

摘要

当喹喔啉类化合物NBQX(2,3 - 二羟基 - 6 - 硝基 - 7 - 氨磺酰基苯并(F)喹喔啉),一种KA/AMPA拮抗剂,被浴用于虎蝾螈视网膜时,在神经节细胞的光诱发突触反应中一种矛盾的作用很明显:在灌注视网膜切片标本的全细胞电压钳条件下,NBQX在光开始时增强兴奋性突触电流。这一观察结果令人惊讶,因为由KA/AMPA受体介导的进入神经节细胞的突触输入被NBQX完全阻断。因此,NBQX增强的电流完全由NMDA受体介导。本研究的目的是确定阻断KA/AMPA受体似乎增强NMDA电流的机制。使用高渗蔗糖刺激来激活来自视网膜内层的神经递质释放,我们观察到NBQX增强了蔗糖诱发的反应,这表明这种增强的至少一部分可能存在于视网膜内层。NBQX不会增强由浴用NMDA激活的NMDA电流,这表明NBQX诱导的增强不是由NMDA受体的调节引起的。在适当的钳制电位下进行的电压钳研究表明,NBQX增强了谷氨酸能传递并减少了对神经节细胞的抑制性输入。在存在士的宁和印防己毒素的情况下,NBQX诱导的NMDA电流增强被消除,这表明NBQX通过选择性和部分减少抑制机制促进了NMDA电流的表达。进一步的研究表明,NBQX对NMDA的增强部分在突触后水平很明显,但突触前成分可能也参与其中,也许在双极细胞终末水平。解释这一观察结果的一种方法是假设抑制性无长突细胞的一个亚群仅需要KA/AMPA受体来进行突触激活:先前对持续无长突细胞的研究支持这一解释。因此,NBQX诱导的增强现象可能反映了NMDA和KA/AMPA受体在三级神经元中的网络选择性分布。

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