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基于 LC-MS/MS 的肾上腺皮质腺癌 H295R 细胞类固醇生成途径的分析及动态建模。

LC-MS/MS based profiling and dynamic modelling of the steroidogenesis pathway in adrenocarcinoma H295R cells.

机构信息

Department of Biological Sciences, University of Bergen, P.O. Box 7803, N-5020 Bergen, Norway.

Department of Mathematics, University of Bergen, P.O. Box 7803, N-5020 Bergen, Norway.

出版信息

Toxicol In Vitro. 2018 Oct;52:332-341. doi: 10.1016/j.tiv.2018.07.002. Epub 2018 Jul 11.

Abstract

Endocrine disrupting chemicals have been reported to exert effects directly on enzymes involved in steroid biosynthesis. Here, we present a new liquid chromatography-tandem mass spectrometry (LC-MS/MS) method for profiling the steroid metabolome of H295R human adrenocarcinoma cells. Our method can simultaneously analyse 19 precursors, intermediates and end-products, representing the adrenal steroid biosynthesis pathway. In order to obtain better insights into the processes of steroidogenesis, we investigated the dose-response relationship of forskolin, an activator of adenylate cyclase, on steroid production in H295R cells. We observed that 1.5 μM forskolin stimulated steroid production at approximately 50% of the maximum rate for most steroids. Hence, we studied the time course for steroid synthesis over 72 h in H295R cells that were stimulated with forskolin. At 24 h, we observed a peak in steroid levels for the intermediate metabolites, such as progesterone and pregnenolone, while end-products such as testosterone and cortisol continued to increase until 72 h. Finally, we show how global data provide a unique basis to develop a comprehensive, dynamic model for steroidogenesis using first order kinetics. The timeline data made it possible to estimate all reaction rate constants of the network. We propose this method as a unique and sensitive screening tool to identify effects on adrenal steroidogenesis by endocrine disrupting compounds.

摘要

内分泌干扰化学物质已被报道直接作用于参与类固醇生物合成的酶。在这里,我们提出了一种新的液相色谱-串联质谱(LC-MS/MS)方法,用于分析 H295R 人肾上腺皮质癌细胞的类固醇代谢组。我们的方法可以同时分析 19 种前体、中间产物和终产物,代表肾上腺类固醇生物合成途径。为了更好地了解类固醇生成过程,我们研究了激活腺苷酸环化酶的 forskolin对 H295R 细胞中类固醇产生的剂量反应关系。我们观察到 1.5 μM 的 forskolin刺激大多数类固醇的类固醇生成率约为最大速率的 50%。因此,我们研究了 forskolin刺激的 H295R 细胞中类固醇合成的 72 小时时间过程。在 24 小时时,我们观察到中间代谢产物(如孕酮和孕烯醇酮)的类固醇水平达到峰值,而终产物(如睾酮和皮质醇)则持续增加至 72 小时。最后,我们展示了全局数据如何为使用一级动力学建立类固醇生成的综合、动态模型提供独特的基础。时间线数据使得估计网络中所有反应速率常数成为可能。我们提出这种方法作为一种独特而敏感的筛选工具,用于识别内分泌干扰化合物对肾上腺类固醇生成的影响。

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