Olpe H R, Barrionuevo G, Lynch G
Life Sci. 1982 Nov 1;31(18):1947-53. doi: 10.1016/0024-3205(82)90033-9.
The action of vincamine on the physiology of the CA1 region of the in vitro hippocampal slice preparation was investigated. At concentrations of 1, 10 and 100 microM, a five-minute perfusion with vincamine did not affect the synaptically-mediated activation of pyramidal neurons evoked by stimulation of the Schaffer-commissural fiber system. The effect of vincamine on the excitability of the pyramidal neurons was investigated by studying its effect on the antidromically-elicited field potential and the input-output relation of Schaffer-commissural fiber input. No effect on either of the two parameters was seen at a concentration of 100 microM of vincamine. Vincamine did, however, attenuate both the post-tetanic (PTP) and long-term potentiation (LTP) evoked by repetitive stimulation of the Schaffer-commissural fiber system. At a concentration of 100 microM of vincamine, PTP was significantly reduced and LTP was almost completely suppressed.
研究了长春胺对体外海马脑片制备中CA1区生理学的作用。在1、10和100微摩尔浓度下,用长春胺灌注五分钟并不影响刺激海马联合纤维系统所诱发的锥体神经元的突触介导激活。通过研究长春胺对逆向诱发的场电位和海马联合纤维输入的输入-输出关系的影响,来探讨长春胺对锥体神经元兴奋性的作用。在100微摩尔浓度的长春胺下,未观察到对这两个参数有任何影响。然而,长春胺确实减弱了海马联合纤维系统重复刺激所诱发的强直后增强(PTP)和长时程增强(LTP)。在100微摩尔浓度的长春胺下,PTP显著降低,LTP几乎完全被抑制。