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皮质酮对小鼠海马切片长时程增强的影响。

Corticosterone effects on long-term potentiation in mouse hippocampal slices.

作者信息

Rey M, Carlier E, Talmi M, Soumireu-Mourat B

机构信息

Laboratoire de Neurobiologie des Comportements, CNRS-URA 372, Université de Provence, Marseille, France.

出版信息

Neuroendocrinology. 1994 Jul;60(1):36-41. doi: 10.1159/000126717.

Abstract

Corticosterone (CORT) can alter several electrophysiological properties in the hippocampus. Few studies have reported the effects of CORT on hippocampal long-term potentiation (LTP). In the CA1 region of the hippocampal slice, we studied the relative increase in population spike (PS) amplitude after inducing tetanus (PS-LTP) in control conditions and in the presence of CORT (0.5 nM or 5 microM). Two perifusion mediums were used which differed in calcium concentration (M1:Ca 2.5 mM; M2: Ca 3.1 mM). In the control slices, the PS-LTP amplitude was greater in the M1 medium. With the low CORT concentration (0.5 nM), the PS-LTP amplitude was greater than in control conditions in the M2 medium only. A similar PS-LTP amplitude increase was also observed in the M2 medium after application of 0.5 nM aldosterone (type I receptor analog). With the high CORT concentration (5 microM), PS-LTP amplitude decreased in the two conditions. This effect was reversed by co-application of RU486 (type II receptor antagonist). These results demonstrate that CORT can modulate PS-LTP via its two types of hippocampal CORT receptors, depending on the concentration applied. They also showed that the extracellular calcium concentration may contribute to the functional change induced by CORT.

摘要

皮质酮(CORT)可改变海马体中的多种电生理特性。很少有研究报道CORT对海马体长时程增强(LTP)的影响。在海马体切片的CA1区域,我们研究了在对照条件下以及存在CORT(0.5 nM或5 microM)时诱发强直刺激后群体峰电位(PS)幅度的相对增加(PS-LTP)。使用了两种钙浓度不同的灌流介质(M1:Ca 2.5 mM;M2:Ca 3.1 mM)。在对照切片中,M1介质中的PS-LTP幅度更大。在低CORT浓度(0.5 nM)时,仅在M2介质中PS-LTP幅度大于对照条件。在应用0.5 nM醛固酮(I型受体类似物)后,M2介质中也观察到类似的PS-LTP幅度增加。在高CORT浓度(5 microM)时,两种条件下PS-LTP幅度均降低。这种效应可通过共同应用RU486(II型受体拮抗剂)来逆转。这些结果表明,CORT可通过其两种类型的海马体CORT受体调节PS-LTP,具体取决于所应用的浓度。它们还表明,细胞外钙浓度可能促成CORT诱导的功能变化。

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