Department of Molecular and Biomedical Pharmacology, University of Kentucky Medical Center (UKMC), MS320, Lexington, KY 40503, United States.
Neurobiol Aging. 2009 Dec;30(12):2053-64. doi: 10.1016/j.neurobiolaging.2008.02.006. Epub 2008 Mar 25.
At hippocampal synapses, repetitive synaptic stimulation (RSS) in the theta frequency range (3-12Hz) is associated with robust EPSP frequency facilitation (FF) and consequently, enhanced action potential (spike) generation and throughput. A complex, synaptically induced hyperpolarization (SIHP) is also triggered by synaptic activation, and a Ca(2+)-dependent afterhyperpolarization (AHP) is triggered above spike threshold. With aging, the AHP is increased and impairs intracellular spike generation, at least in accommodation protocols. However, little is known about how these aging changes interact to affect spike generation at physiological frequencies of RSS, or if the SIHP also is modified in aging. Here we performed the first tests of the net impact of these excitatory and inhibitory aging changes on spike generation during RSS. We report that during RSS at spike threshold (1) spike throughput is well sustained at theta frequencies in young and aged neurons; (2) an interposed AHP dampens spike generation, particularly in aged neurons and at higher frequencies; (3) compared to the AHP, the SIHP does not exert an equivalent inhibitory effect on spike throughput; and (4) in contrast to the AHP, the SIHP is reduced with aging. Together, these results are consistent with a model in which the source of the hyperpolarization is important in determining hippocampal spike throughput within the theta frequency range.
在海马突触,重复的突触刺激(RSS)在θ频率范围内(3-12Hz)与强大的 EPSP 频率易化(FF)相关,因此,增强了动作电位(尖峰)的产生和通过。突触激活还会引发复杂的突触诱导超极化(SIHP),并且在尖峰阈值以上触发 Ca2+依赖性后超极化(AHP)。随着年龄的增长,AHP 增加并损害细胞内尖峰的产生,至少在适应协议中是这样。然而,对于这些衰老变化如何相互作用以影响 RSS 生理频率下的尖峰产生,或者 SIHP 是否也在衰老中发生改变,知之甚少。在这里,我们首次测试了这些兴奋性和抑制性衰老变化对 RSS 期间尖峰产生的净影响。我们报告说,在尖峰阈值下的 RSS 期间(1)在年轻和老年神经元中,尖峰通过量在θ频率下得到很好的维持;(2)插入的 AHP 会抑制尖峰产生,特别是在老年神经元和更高频率下;(3)与 AHP 相比,SIHP 对尖峰通过量没有产生等效的抑制作用;(4)与 AHP 相反,SIHP 随年龄增长而减少。这些结果表明,在θ频率范围内,决定海马尖峰通过量的是超极化的来源。