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抗抑郁药氯米帕明可调节成纤维细胞和大鼠原代神经元中皮质醇的细胞内浓度以及糖皮质激素受体的表达。

The antidepressant clomipramine regulates cortisol intracellular concentrations and glucocorticoid receptor expression in fibroblasts and rat primary neurones.

作者信息

Pariante Carmine M, Hye Abdul, Williamson Ritchie, Makoff Andrew, Lovestone Simon, Kerwin Robert W

机构信息

Section of Clinical Neuropharmacology, Institute of Psychiatry, King's College London, London, UK.

出版信息

Neuropsychopharmacology. 2003 Sep;28(9):1553-61. doi: 10.1038/sj.npp.1300195. Epub 2003 May 7.

DOI:10.1038/sj.npp.1300195
PMID:12784111
Abstract

Incubation of LMCAT fibroblasts cells with antidepressants potentiates glucocorticoid receptor (GR)-mediated gene transcription in the presence of cortisol, but not of corticosterone. We have suggested that antidepressants do so by inhibiting the LMCAT cells membrane steroid transporter and thus by increasing cortisol intracellular concentrations. We now confirm and extend this model to primary neuronal cultures. Clomipramine, a tricyclic antidepressant, increased the intracellular accumulation of 3H-cortisol, but not 3H-corticosterone, in LMCAT cells (+80%) and primary rat neurones (+20%). The latter finding is the first demonstration that a membrane steroid transporter is present in neurones. Moreover, verapamil, a membrane steroid transporter inhibitor, reduced the effects of clomipramine on the intracellular accumulation of 3H-cortisol in LMCAT cells. Finally, clomipramine also decreased GR expression (whole-cell Western blot) in LMCAT cells (50% reduction) and primary rat neurones (80% reduction). This GR downregulation can explain the reduced GR-mediated gene transcription previously described under experimental conditions that do not elicit the effects on the LMCAT cells steroid transporter. This work further supports the hypothesis that membrane steroid transporters regulating the access of glucocorticoids to the brain in vivo are a fundamental target for antidepressant action.

摘要

在存在皮质醇而非皮质酮的情况下,用抗抑郁药孵育LMCAT成纤维细胞可增强糖皮质激素受体(GR)介导的基因转录。我们曾提出,抗抑郁药是通过抑制LMCAT细胞膜类固醇转运体,从而增加皮质醇细胞内浓度来实现这一作用的。我们现在证实并将这一模型扩展到原代神经元培养。三环类抗抑郁药氯米帕明增加了LMCAT细胞(增加80%)和原代大鼠神经元(增加20%)中3H-皮质醇的细胞内蓄积,但未增加3H-皮质酮的蓄积。后一发现首次证明神经元中存在膜类固醇转运体。此外,膜类固醇转运体抑制剂维拉帕米降低了氯米帕明对LMCAT细胞中3H-皮质醇细胞内蓄积的影响。最后,氯米帕明还降低了LMCAT细胞(降低50%)和原代大鼠神经元(降低80%)中的GR表达(全细胞蛋白质免疫印迹法)。这种GR下调可以解释先前在未引发对LMCAT细胞类固醇转运体影响的实验条件下所描述的GR介导的基因转录减少的现象。这项工作进一步支持了这样一种假说,即体内调节糖皮质激素进入大脑的膜类固醇转运体是抗抑郁作用的一个基本靶点。

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