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The action of N-methyl-D-aspartic acid on mouse spinal neurones in culture.

机译:N-甲基-D-天冬氨酸对培养的小鼠脊髓神经元的作用。

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摘要

Neurones from the ventral half of mouse embryo spinal cord were grown in dissociated culture and voltage clamped. The current-voltage relation of responses evoked by N-methyl-D-aspartic acid (NMDA), L-glutamic acid and kainic acid was recorded in media of different ionic composition. On removal of Mg2+ from the extracellular solution, responses to NMDA and L-glutamate became less voltage sensitive, such that NMDA responses were no longer associated with a region of negative slope conductance. The antagonism of NMDA responses produced by application of Mg2+ to neurones bathed in nominally Mg2+-free solutions shows voltage dependence and uncompetitive kinetics. Voltage-jump experiments showed that the voltage-dependent action of Mg2+ occurred rapidly, and with complex kinetics. Ni2+ and Cd2+, two potent blockers of calcium currents in spinal cord neurones, had significantly different potencies as NMDA antagonists, Ni2+ being of greater potency than Mg2+, and Cd2+ considerably weaker. The voltage-dependent block of NMDA responses produced by physiological concentrations of Mg2+ is sufficient to explain the apparent increase in membrane resistance produced by NMDA in current-clamp experiments, and the ability of NMDA to support repetitive firing. Substitution of choline for Na+ produced a hyperpolarizing shift in the reversal potential for responses evoked by kainic acid consistent with an increase in permeability to Na+ and K+. In choline-substituted solutions, the reversal potential of NMDA responses was more positive than that recorded for kainic acid, and in addition NMDA responses showed enhanced desensitization.
机译:来自小鼠胚胎脊髓腹侧的神经元在解离的培养物中生长并钳位电压。在不同离子组成的介质中记录了N-甲基-D-天冬氨酸(NMDA),L-谷氨酸和海藻酸引起的反应的电流-电压关系。从细胞外溶液中去除Mg2 +时,对NMDA和L-谷氨酸的响应变得对电压的敏感性降低,从而NMDA响应不再与负斜率电导区域相关。通过将Mg2 +应用于名义上不含Mg2 +的溶液中浸泡的神经元而产生的NMDA反应的拮抗作用表现出电压依赖性和非竞争性动力学。电压跳跃实验表明,Mg2 +的电压依赖性作用发生迅速,并且动力学复杂。脊髓神经元中两种有效的钙电流阻滞剂Ni2 +和Cd2 +作为NMDA拮抗剂具有显着不同的效力,Ni2 +的效力比Mg2 +大,而Cd2 +则弱得多。由生理浓度的Mg2 +产生的NMDA反应的电压依赖性传导阻滞足以解释在电流钳实验中NMDA产生的膜电阻的明显增加,以及NMDA支持重复发射的能力。胆碱替代Na +会导致海藻酸引起的反应的逆转电位发生超极化变化,这与Na +和K +的渗透性增加相一致。在胆碱取代的溶液中,NMDA反应的逆转电位比海藻酸记录的逆转电位更强,此外,NMDA反应显示出增强的脱敏作用。

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