Karlsson U, Haage D, Johansson S
Astra Pain Control AB, Novum Unit, Huddinge, Sweden.
Brain Res. 1997 Oct 3;770(1-2):256-60. doi: 10.1016/s0006-8993(97)00857-3.
The responses of acutely dissociated medial preoptic neurons to application of GABA, and glycine were studied using the perforated-patch whole-cell recording technique under voltage-clamp conditions. GABA, at a concentration of 1 mM, evoked outward currents in all cells (n = 33) when studied at potentials positive to -80 mV. The I-V relation was roughly linear. The currents evoked by GABA were partially blocked by 25-75 microM picrotoxin and were also partially or completely blocked by 100-200 microM bicuculline. Glycine, at a concentration of 1 mM, did also evoke outward currents in all cells (n = 12) when studied at potentials positive to -75 mV. The I-V relation was roughly linear. The currents evoked by glycine were largely blocked by 1 microM strychnine. In conclusion, the present work demonstrates that neurons from the medial preoptic nucleus of rat directly respond to the inhibitory transmitters GABA and glycine with currents that can be attributed to GABAA receptors and glycine receptors respectively.
在电压钳制条件下,采用穿孔膜片全细胞记录技术,研究了急性分离的内侧视前区神经元对γ-氨基丁酸(GABA)和甘氨酸的反应。当在高于-80 mV的电位下进行研究时,浓度为1 mM的GABA在所有细胞(n = 33)中诱发外向电流。电流-电压关系大致呈线性。GABA诱发的电流被25 - 75 μM的苦味毒部分阻断,也被100 - 200 μM的荷包牡丹碱部分或完全阻断。当在高于-75 mV的电位下进行研究时,浓度为1 mM的甘氨酸在所有细胞(n = 12)中也诱发外向电流。电流-电压关系大致呈线性。甘氨酸诱发的电流被1 μM的士的宁大部分阻断。总之,目前的研究表明,大鼠内侧视前核的神经元分别对抑制性递质GABA和甘氨酸直接产生电流反应,可以分别归因于GABAA受体和甘氨酸受体。