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海马切片制备中CA1区的长时程增强持续时间。

The duration of long-term potentiation in the CA1 region of the hippocampal slice preparation.

作者信息

Reymann K G, Malisch R, Schulzeck K, Brödemann R, Ott T, Matthies H

出版信息

Brain Res Bull. 1985 Sep;15(3):249-55. doi: 10.1016/0361-9230(85)90147-9.

DOI:10.1016/0361-9230(85)90147-9
PMID:4052825
Abstract

The duration of long-term potentiation (LTP) of the monosynaptic excitatory Schaffer collateral-commissural input to hippocampal neurons of the CA1 region was examined in the in vitro slice. Relatively stable evoked potentials were obtained under conventional perfusion conditions at least for 10 hours. Tetanic stimulation (100 Hz, 1 sec) increased the population spike (pop-spike) amplitude by about 150% and the slope of the field-EPSP by about 30% over the pre-LTP baseline, whereas the latency and peak latency of the pop-spike decreased. In comparison to control experiments (same number of stimuli at 0.2 Hz) the differences were statistically significant for 2 hr (field-EPSP) and for greater than or equal to 10 hr (pop-spike), respectively. Repeated tetanization (3 X 100 Hz/1 sec), however, substantially prolongs EPSP-LTP (greater than or equal to 10 hr) and doubles the approximated half-life of pop-spike LTP. The threshold current intensity to elicit pop-spike responses decreased after the induction of LTP. Furthermore, the smaller field-EPSP values necessary to evoke near-threshold pop-spikes demonstrate an E-S potentiation (left-shift) at least in the low-intensity range. While the total duration of potentiation of the different parameters has not been determined, all the above mentioned effects could be observed at least 10 hr following the repeated tetanization. It is proposed that the slice preparation is suitable for the investigation of mechanisms of a postulated late phase of LTP if appropriate conditions are used.

摘要

在体外脑片中检测了向CA1区海马神经元的单突触兴奋性Schaffer侧支-连合纤维输入的长时程增强(LTP)的持续时间。在传统灌流条件下至少10小时可获得相对稳定的诱发电位。强直刺激(100Hz,1秒)使群体峰电位(pop-spike)幅度比LTP前基线增加约150%,场兴奋性突触后电位(field-EPSP)斜率增加约30%,而pop-spike的潜伏期和峰潜伏期缩短。与对照实验(0.2Hz相同刺激次数)相比,场-EPSP在2小时、pop-spike在大于或等于10小时时差异具有统计学意义。然而,重复强直刺激(3×100Hz/1秒)可显著延长EPSP-LTP(大于或等于10小时),并使pop-spike LTP的近似半衰期加倍。诱导LTP后,引发pop-spike反应的阈值电流强度降低。此外,引发近阈值pop-spike所需的较小场-EPSP值表明至少在低强度范围内存在兴奋性突触后电位增强(左移)。虽然尚未确定不同参数增强的总持续时间,但在重复强直刺激后至少10小时可观察到上述所有效应。如果使用适当条件,建议脑片制备适用于研究假定的LTP晚期机制。

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