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苯二氮䓬与培养的人垂体细胞的结合。

Benzodiazepine binding to cultured human pituitary cells.

作者信息

Voigt M M, Davis L G, Wyche J H

出版信息

J Neurochem. 1984 Oct;43(4):1106-13. doi: 10.1111/j.1471-4159.1984.tb12850.x.

Abstract

Benzodiazepine receptors were investigated in a cell line of human pituitary cells (18-54,SF) grown in serum-free medium. Preparations of 18-54,SF whole cells and cell membranes were shown to possess saturable [3H]diazepam binding sites. Membrane sites were found to have a KD of 20 nM for diazepam while whole cells possessed a twofold higher value. The KD values determined from Rosenthal, Hill, and kinetic analyses were consistent for each preparation. Whole-cell binding of [3H]diazepam was observed to be more stable than binding to membranes at higher temperatures (37 degrees C) and when longer incubation times (60 min) were employed at 4 degrees C. The rank order potency of various benzodiazepines to inhibit [3H]diazepam binding to whole cells and membranes was Ro 5-4864, flunitrazepam, diazepam, and clonazepam. Representatives of other drug classes did not inhibit this benzodiazepine binding. When 18-54,SF cells were grown for 24 h with 100 nM diazepam and then extensively washed membranes prepared, the KD for diazepam increased to 38 nM whereas the Bmax was unchanged when compared with untreated controls. Overall, these findings indicate that pituitary cells possess a peripheral-type benzodiazepine receptor and that the whole cell receptor differs quantitatively when compared with the membrane receptor.

摘要

在无血清培养基中生长的人垂体细胞系(18 - 54,SF)中研究了苯二氮䓬受体。结果显示,18 - 54,SF全细胞和细胞膜制剂具有可饱和的[³H]地西泮结合位点。发现细胞膜位点对地西泮的解离常数(KD)为20 nM,而全细胞的该值则高出两倍。通过罗森塔尔、希尔和动力学分析确定的KD值在每种制剂中都是一致的。在较高温度(37℃)下以及在4℃采用较长孵育时间(60分钟)时,观察到[³H]地西泮的全细胞结合比与细胞膜的结合更稳定。各种苯二氮䓬类药物抑制[³H]地西泮与全细胞和细胞膜结合的效价顺序为Ro 5 - 4864、氟硝西泮、地西泮和氯硝西泮。其他药物类别的代表物不抑制这种苯二氮䓬类结合。当18 - 54,SF细胞用100 nM地西泮培养24小时,然后制备并广泛洗涤细胞膜时,地西泮的KD增加到38 nM,而与未处理的对照相比,最大结合量(Bmax)不变。总体而言,这些发现表明垂体细胞具有外周型苯二氮䓬受体,并且与膜受体相比,全细胞受体在数量上有所不同。

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