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On-line formation, separation, and estrogen receptor affinity screening of cytochrome P450-derived metabolites of selective estrogen receptor modulators

机译:选择性雌激素受体调节剂的细胞色素P450衍生代谢产物的在线形成,分离和雌激素受体亲和力筛选

摘要

We have developed a fully automated bioreactor coupled to an on-line receptor affinity detection system. This analytical system provides detailed information on pharmacologically active metabolites of selective estrogen receptor modulators (SERMs) generated by cytochromes P450 (P450s). We demonstrated this novel concept by investigating the metabolic activation of tamoxifen and raloxifene by P450-containing pig and rat liver microsomes. The high resolution screening (HRS) system is based on the coupling of a P450-bioreactor to an HPLC-based estrogen receptor alpha (ERα) affinity assay. P450-derived metabolites of the SERMs were generated in the bioreactor, subsequently trapped on-line with solid phase extraction, and finally separated with gradient HPLC. Upon elution, the metabolites were screened on affinity for ERα with an on-line HRS assay. With this HRS system, we were able to follow, in a time-dependent manner, the formation of ERα-binding metabolites of tamoxifen and raloxifene. By analyzing the bioaffinity chromatograms with liquid chromatography-tandem mass spectrometry, structural information of the pharmacologically active metabolites was obtained as well. For tamoxifen, 15 active and 6 nonactive metabolites were observed, of which 5 were of primary, 10 of secondary, and 6 of an as yet unknown order of metabolism. Raloxifene was biotransformed in three primary and three secondary metabolites. MS/MS analysis revealed that three of the observed active metabolites of raloxifene were not described before. The present automated on-line HRS system coupled to a P450-containing bioreactor and an ERα-affinity detector proved very efficient, sensitive, and selective in metabolic profiling of SERMs. Copyright © 2006 by The American Society for Pharmacology and Experimental Therapeutics.
机译:我们已经开发了与在线受体亲和力检测系统耦合的全自动生物反应器。该分析系统提供了有关由细胞色素P450(P450s)产生的选择性雌激素受体调节剂(SERM)的药理活性代谢物的详细信息。通过研究含P450的猪和大鼠肝微粒体对他莫昔芬和雷洛昔芬的代谢活化作用,我们证明了这一新颖的概念。高分辨率筛选(HRS)系统基于P450生物反应器与基于HPLC的雌激素受体α(ERα)亲和力测定的偶联。 SERM的P450衍生代谢产物在生物反应器中生成,随后通过固相萃取在线捕获,最后通过梯度HPLC分离。洗脱后,通过在线HRS分析筛选代谢物对ERα的亲和力。通过这种HRS系统,我们能够以时间依赖的方式追踪他莫昔芬和雷洛昔芬的ERα结合代谢产物的形成。通过液相色谱-串联质谱分析生物亲和色谱图,还可以获得药理活性代谢物的结构信息。对于他莫昔芬,观察到15种活性和6种非活性代谢产物,其中5种为主要代谢产物,10种为次要代谢产物,还有6种未知的代谢次序。雷洛昔芬在三种主要和三种次要代谢物中进行了生物转化。 MS / MS分析显示,之前未描述所观察到的雷洛昔芬的三种活性代谢物。目前的自动化在线HRS系统与包含P450的生物反应器和ERα亲和力检测器耦合,在SERM的代谢谱分析中被证明是非常有效,敏感和选择性的。版权所有©2006,美国药理与实验治疗学会。

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