Davies J, Watkins J C
Brain Res. 1985 Feb 18;327(1-2):113-20. doi: 10.1016/0006-8993(85)91505-7.
We have investigated the effects of iontophoretically administered gamma-D-glutamylaminomethyl sulfonate (GAMS) on excitation of dorsal horn neurons and Renshaw cells of the cat spinal cord induced by exogenous excitants and by synaptic activation following stimulation of low threshold primary afferent fibers. Comparisons were made between the synaptic depressant effects of GAMS and those of gamma-D-glutamylglycine (gamma DGG) and (+/-)-2-amino-5-phosphonovalerate (APV). At low iontophoretic ejection currents, GAMS showed clear selectivity in antagonizing responses to excitatory amino acids in the order kainate greater than quisqualate greater than L-aspartate greater than NMDA greater than L-glutamate. This selectivity was decreased at high ejection currents, when acetylcholine-induced excitation of Renshaw cells was also reduced. GAMS was equieffective with gamma DGG in depressing both APV-sensitive polysynaptic excitation and APV-resistant monosynaptic excitation of spinal neurons. Ventral root evoked excitation of Renshaw cells was not reduced by GAMS. In some cells a depression of synaptic excitation by GAMS was observed in the absence of an effect on either L-glutamate- or L-aspartate-induced excitation. This raises the possibility that some other endogenous substance may be a transmitter acting at kainate/quisqualate type receptors in the cat spinal cord. However, other factors are discussed which may explain this observation.
我们研究了离子电渗法给予γ-D-谷氨酰胺甲基磺酸盐(GAMS)对外源性兴奋剂以及低阈值初级传入纤维刺激后突触激活所诱导的猫脊髓背角神经元和闰绍细胞兴奋的影响。对GAMS与γ-D-谷氨酰甘氨酸(γDGG)和(±)-2-氨基-5-膦酸戊酸(APV)的突触抑制作用进行了比较。在低离子电渗喷射电流下,GAMS在拮抗对兴奋性氨基酸的反应方面表现出明显的选择性,顺序为:海人酸>quisqualate>L-天冬氨酸>NMDA>L-谷氨酸。当喷射电流较高时,这种选择性降低,此时乙酰胆碱诱导的闰绍细胞兴奋也会减弱。GAMS在抑制脊髓神经元的APV敏感多突触兴奋和APV抗性单突触兴奋方面与γDGG等效。GAMS并未降低腹根诱发的闰绍细胞兴奋。在一些细胞中,观察到GAMS对突触兴奋有抑制作用,而对L-谷氨酸或L-天冬氨酸诱导的兴奋没有影响。这增加了一种可能性,即某些其他内源性物质可能是作用于猫脊髓中海人酸/quisqualate型受体的递质。然而,也讨论了可能解释这一观察结果的其他因素。