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关于谷氨酸在青蛙脊髓运动神经元中的突触后作用。

On the postsynaptic action of glutamate in frog spinal motoneurons.

作者信息

Sonnhof U, Bührle C P

出版信息

Pflugers Arch. 1980 Nov;388(2):101-9. doi: 10.1007/BF00584115.

Abstract

In the isolated frog spinal cord depolarization of motoneurons (MNs) induced by glutamate (GLUT) was not accompanied by measurable changes of neuronal input resistance when chemical synaptic transmission was blocked by Mn2+ or Mg2+. The GLUT depolarization was, however, paralleled by a considerable increase in K+ in the extracellular space. To clarify, whether the GLUT depolarization was exclusively due to a reduction of the transmembrane K+ gradient or whether ion conductances not detectable by measurements of neuronal input resistance were involved, membrane potential (MP) was plotted semilogarithmically versus extracellular K+ activity (aKe+). During experimental elevation of aKe+ the function delta MP/dec. delta aKe+ was found to agree fairly with the Nernst equation. The slope of this function was much steeper during GLUT superfusion, indicating an influx of positive ions. The elevation of aKe+ during the GLUT action can mimic postsynaptic effects by release of transmitter from presynaptic terminals synapsing with the recorded cell. In vivo preparations do not allow blockade of chemical synaptic transmission. Therefore, it is impossible to decide, whether the recorded cell is depolarized either postsynaptically by GLUT or by K+ release from surrounding GLUT sensitive cells. As an experimental proof of the postsynaptic GLUT action is not feasible in such preparations, the ubiquitous action of GLUT in the CNS may have been overestimated.

摘要

在分离的青蛙脊髓中,当化学性突触传递被Mn2+或Mg2+阻断时,谷氨酸(GLUT)诱导的运动神经元(MNs)去极化并未伴随神经元输入电阻的可测量变化。然而,GLUT去极化伴随着细胞外空间K+的显著增加。为了弄清楚GLUT去极化是否仅仅是由于跨膜K+梯度的降低,或者是否涉及通过测量神经元输入电阻无法检测到的离子电导,将膜电位(MP)与细胞外K+活性(aKe+)进行半对数绘图。在实验性升高aKe+期间,发现函数δMP/dec.δaKe+与能斯特方程相当吻合。在GLUT灌流期间,该函数的斜率要陡得多,表明有正离子流入。GLUT作用期间aKe+的升高可通过与记录细胞形成突触的突触前终末释放递质来模拟突触后效应。在体内制备中不允许阻断化学性突触传递。因此,不可能确定记录的细胞是通过GLUT在突触后去极化,还是通过周围对GLUT敏感的细胞释放K+去极化。由于在这种制备中突触后GLUT作用的实验证据不可行,GLUT在中枢神经系统中的普遍作用可能被高估了。

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