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托彻普通过一种细胞内钙介导的机制诱导醛固酮和皮质醇生成,该机制独立于胆固醇酯转运蛋白抑制作用。

Torcetrapib induces aldosterone and cortisol production by an intracellular calcium-mediated mechanism independently of cholesteryl ester transfer protein inhibition.

作者信息

Hu Xiao, Dietz Jessica D, Xia Chunsheng, Knight Delvin R, Loging William T, Smith Andrew H, Yuan Haodan, Perry David A, Keiser Joan

机构信息

St. Louis Laboratories, Pfizer Global Research and Development, 700 Chesterfield Parkway West, Chesterfield, Missouri 63017, USA.

出版信息

Endocrinology. 2009 May;150(5):2211-9. doi: 10.1210/en.2008-1512. Epub 2009 Jan 22.

Abstract

ILLUMINATE (Investigation of Lipid Level Management to Understand its Impact in Atherosclerotic Events), the phase 3 morbidity and mortality trial of torcetrapib, a cholesteryl ester transfer protein (CETP) inhibitor, identified previously undescribed changes in plasma levels of potassium, sodium, bicarbonate, and aldosterone. A key question after this trial is whether the failure of torcetrapib was a result of CETP inhibition or of some other pharmacology of the molecule. The direct effects of torcetrapib and related molecules on adrenal steroid production were assessed in cell culture using the H295R as well as the newly developed HAC15 human adrenal carcinoma cell lines. Torcetrapib induced the synthesis of both aldosterone and cortisol in these two in vitro cell systems. Analysis of steroidogenic gene expression indicated that torcetrapib significantly induced the expression of CYP11B2 and CYP11B1, two enzymes in the last step of aldosterone and cortisol biosynthesis pathway, respectively. Transcription profiling indicated that torcetrapib and angiotensin II share overlapping pathways in regulating adrenal steroid biosynthesis. Hormone-induced steroid production is mainly mediated by two messengers, calcium and cAMP. An increase of intracellular calcium was observed after torcetrapib treatment, whereas cAMP was unchanged. Consistent with intracellular calcium being the key mediator of torcetrapib's effect in adrenal cells, calcium channel blockers completely blocked torcetrapib-induced corticoid release and calcium increase. A series of compounds structurally related to torcetrapib as well as structurally distinct compounds were profiled. The results indicate that the pressor and adrenal effects observed with torcetrapib and related molecules are independent of CETP inhibition.

摘要

ILLUMINATE(脂质水平管理对动脉粥样硬化事件影响的研究)是一项关于胆固醇酯转运蛋白(CETP)抑制剂托彻普贝的3期发病率和死亡率试验,该试验发现了血浆中钾、钠、碳酸氢盐和醛固酮水平此前未被描述的变化。该试验之后的一个关键问题是,托彻普贝的失败是CETP抑制的结果,还是该分子其他药理学作用的结果。使用H295R以及新开发的HAC15人肾上腺癌细胞系,在细胞培养中评估了托彻普贝及相关分子对肾上腺类固醇生成的直接影响。在这两种体外细胞系统中,托彻普贝均诱导了醛固酮和皮质醇的合成。类固醇生成基因表达分析表明,托彻普贝分别显著诱导了醛固酮和皮质醇生物合成途径最后一步的两种酶CYP11B2和CYP11B1的表达。转录谱分析表明,托彻普贝和血管紧张素II在调节肾上腺类固醇生物合成方面有重叠的途径。激素诱导的类固醇生成主要由两种信使介导,即钙和环磷酸腺苷(cAMP)。托彻普贝处理后观察到细胞内钙增加,而cAMP未发生变化。与细胞内钙是托彻普贝在肾上腺细胞中作用的关键介质一致,钙通道阻滞剂完全阻断了托彻普贝诱导的皮质激素释放和钙增加。对一系列与托彻普贝结构相关的化合物以及结构不同的化合物进行了分析。结果表明,托彻普贝及相关分子观察到的升压和肾上腺作用与CETP抑制无关。

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