Alger B E, Nicoll R A
J Neurophysiol. 1983 Jun;49(6):1381-91. doi: 10.1152/jn.1983.49.6.1381.
Intracellular recordings from CA1 pyramidal cells in the rat hippocampal slice preparation have been used to study the action of ammonia on inhibitory postsynaptic potentials (IPSPs). Concentrations of ammonia less than 2 mM had little effect on IPSPs or the action of iontophoretically applied gamma-aminobutyric acid (GABA). This concentration has been reported to be fully effective in blocking hyperpolarizing IPSPs in spinal cord and neocortex. Concentrations above 2 mM did cause a depolarizing shift in the IPSP and GABA reversal potentials, but this effect was accompanied by several generalized effects. The conductance increase during the IPSP but not during the GABA response was depressed, indicating that ammonia has a presynaptic depressant effect on the IPSP. Ammonia also depressed excitatory postsynaptic potentials (EPSPs), presynaptic fiber potentials, and pyramidal cell population spikes. In addition, the calcium-dependent potassium response elicited by depolarizing current pulses was depressed. This depression was due, in part, to a depolarizing shift in the reversal potential for this response. Responses recorded with potassium-sensitive microelectrodes indicate that ammonia releases potassium into the extracellular space. The possibility is discussed that the shifts in IPSP reversal potential seen with high concentrations of ammonia are a consequence of generalized nonspecific effects. We conclude that the relative insensitivity of hippocampal IPSPs to blockade by ammonia suggests that a mechanism fundamentally unlike an ammonia-sensitive chloride pump must maintain the hippocampal IPSP gradient.
在大鼠海马脑片标本中,对CA1锥体神经元进行细胞内记录,以研究氨对抑制性突触后电位(IPSP)的作用。氨浓度低于2 mM时,对IPSP或离子电渗法施加的γ-氨基丁酸(GABA)的作用影响很小。据报道,该浓度在阻断脊髓和新皮质的超极化IPSP方面完全有效。高于2 mM的浓度确实会导致IPSP和GABA反转电位出现去极化偏移,但这种效应伴随着几种全身性效应。IPSP期间的电导增加(而非GABA反应期间的电导增加)受到抑制,这表明氨对IPSP有突触前抑制作用。氨还抑制兴奋性突触后电位(EPSP)、突触前纤维电位和锥体神经元群体峰电位。此外,去极化电流脉冲引发的钙依赖性钾反应也受到抑制。这种抑制部分是由于该反应的反转电位出现去极化偏移。用钾敏感微电极记录的反应表明,氨将钾释放到细胞外空间。文中讨论了高浓度氨导致IPSP反转电位偏移可能是全身性非特异性效应的结果这一可能性。我们得出结论,海马IPSP对氨阻断相对不敏感,这表明维持海马IPSP梯度的机制与氨敏感氯泵根本不同。