三氟拉嗪抑制促甲状腺激素释放激素刺激的促甲状腺激素分泌

I. Z̆ofková, J. Bednar
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引用次数: 1

摘要

在以前的工作中,证明了一些物质影响细胞质中钙含量后促甲状腺分泌的变化。本研究的目的是评估三氟拉嗪(一种精神药物制剂)对激素的反应,其作用的主要机制是使钙信号的细胞质受体-钙调蛋白失活。分泌细胞对胞内钙的利用不良是抑制分泌的重要因素。用TRH试验评估同一受试者在三氟拉嗪给药前后的促甲状腺分泌储备(TSH),作为静脉给药200微克TRH后20、30、40、60分钟静息时和TRH刺激下TSH水平的差异。结果显示,该钙调素拮抗剂口服1周,每天6-12 mg,可显著抑制健康人在第20和40 min时TSH对TRH的分泌反应(P < 0.05)。然而,在未使用三氟拉嗪的一组受试者中,在与使用三氟拉嗪的实验相同的条件和相同的时间间隔下,重复TRH试验的重复性非常令人满意,因此可以排除重复使用TRH引起的生理抑制。因此,抑制TSH对TRH的分泌反应可以认为是三氟拉嗪直接作用于促甲状腺分泌机制的结果。三氟拉嗪显著降低了血钙水平,提高了磷酸盐水平,但对血镁水平没有影响。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trifluoperazine Inhibits Thyrotropin-Releasing Hormone-Stimulated TSH Secretion
In previous work changes of the thyrotropic secretion after administration of some substances affecting the calcium content in the cytosol were demonstrated. The object of the present investigation was to assess the hormonal response to the administration of trifluoperazine, a psychopharmaceutical preparation, the main mechanism of its action being the inactivation of the cytosol receptor for the calcium signal - calmodulin. The poor utilization of intracellular calcium of the secretory cell is then the factor which inhibits secretion proper. The thyrotropic secretory reserve (delta TSH) was assessed in the same subjects before and after trifluoperazine administration by the TRH test as the difference of values at rest and TRH-stimulated TSH levels during the 20th, 30th, 40th and 60th minute following intravenous administration of 200 micrograms TRH. It was revealed that this calmodulin antagonist administered for one week in amounts of 6-12 mg per day by mouth significantly inhibits the secretory response of TSH to TRH in healthy subjects during the 20th and 40th min. (P less than 0.05). The reproducibility of the TRH test repeated in a group of subjects not treated with trifluoperazine, however, under equal conditions and after the same time intervals as in the experiment with trifluoperazine was very satisfactory and thus physiological inhibition caused by repeated TRH administration could be ruled out. The inhibition of the secretory TSH response to TRH can be therefore considered the consequence of the direct effect of trifluoperazine on the thyrotropic secretory mechanism. Trifluoperazine significantly reduced serum calcium levels and raised phosphate levels, while it did not affect the blood levels of magnesium.(ABSTRACT TRUNCATED AT 250 WORDS)
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