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Glutamate and synaptic excitation of reticulospinal neurones of lamprey.

机译:七lamp鳗的网状脊髓神经元的谷氨酸和突触激发。

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摘要

1. Intracellular recordings were made from the cell bodies and axons of giant reticulospinal neurones (Müller cells) of the lamprey, and responses to bath- and ionophoretically applied glutamate and aspartate were studied. 2. Bath-applied glutamate and aspartate depolarized both cell bodies and axons, but there appeared to be an associated conductance increase only in the cell bodies. The depolarization of Müller axons by the bath-applied drugs probably resulted from the passive flow of current into them from spinal cells to which the axons are coupled electrically. 3. The reversal potentials for responses to ionophoretically applied glutamate and for excitatory post-synaptic potentials (e.p.s.p.s) evoked by stimulation of the contralateral vestibular nerve were directly determined in Müller cell bodies which had been damaged by penetration with low-resistance electrodes. The glutamate and e.p.s.p. reversal potentials were identical, the average difference in eight cells being 0.31 mV. The absolute value of the e.p.s.p.--glutamate reversal potential varied from --16 to --35 mV in different cells, with the more negative values occurring in less damaged cells with higher resting potentials. 4. Injection of Cl into Müller cell bodies had no effect on the e.p.s.p.--glutamate reversal potential. Reduction of the extracellular Na concentration to 1 over 10 normal produced a negative shift in the glutamate reversal potential. 5. It is proposed that the natural excitatory transmitter and glutamate produce identical conductance changes in Müller cells, involving an increase in Na and K conductance.
机译:1.从七rey鳗的网状棘突大神经元细胞(Müller细胞)的细胞体和轴突进行细胞内记录,并研究对浴液和离子载体施用的谷氨酸和天冬氨酸的反应。 2.浸浴的谷氨酸和天冬氨酸可使细胞体和轴突去极化,但是似乎仅在细胞体中相关的电导增加。浸浴药物使Müller轴突消极化,可能是由于电流从轴突电耦合的脊柱细胞被动流入其中。 3.直接通过刺激对侧前庭神经引起的对离子性应用谷氨酸的反应和兴奋性突触后电位(e.p.s.p.s)的逆转电位直接在Müller细胞体内测定,该细胞已被低电阻电极穿透而受损。谷氨酸和e.p.s.p.反向电位相同,八个电池的平均差为0.31 mV。在不同细胞中e.p.s.p.谷氨酸逆转电位的绝对值在-16至--35 mV之间变化,负值更多的出现在损伤较少,静息电位较高的细胞中。 4.向Müller细胞体中注入Cl对e.p.s.p.-谷氨酸逆转电位没有影响。将细胞外Na浓度降低至超过10正常值的1会导致谷氨酸逆转电位发生负向移动。 5.建议自然兴奋性递质和谷氨酸在Müller细胞中产生相同的电导率变化,涉及Na和K电导率的增加。

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