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Development of On-line Liquid Chromatography-Biochemical Detection for Soluble Epoxide Hydrolase Inhibitors in Mixtures

机译:混合物中可溶性环氧化物水解酶抑制剂的在线液相色谱 - 生物化学检测

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摘要

In this study, an end-point-based fluorescence assay for soluble epoxide hydrolase (sEH) was transformed into an on-line continuous-flow format. The on-line biochemical detection system (BCD) was coupled on-line to liquid chromatography (LC) to allow mixture analysis. The on-line BCD was based on a flow system wherein sEH activity was detected by competition of analytes with the substrate hydrolysis. The reaction product was measured by fluorescence detection. In parallel to the BCD data, UV and MS data were obtained through post-column splitting of the LC effluent. The buffer system and reagent concentrations were optimized resulting in a stable on-line BCD with a good assay window and good sensitivity (S/N > 60). The potency of known sEH inhibitors (sEHis) obtained by LC–BCD correlates well with published values. The LC–BCD system was applied to test how oxidative microsomal metabolism affects the potency of three sEHis. After incubation with pig liver microsomes, several metabolites of sEHis were characterized by MS, while their individual potencies were measured by BCD. For all compounds tested, active metabolites were observed. The developed method allows for the first time the detection of sEHis in mixtures providing new opportunities in the development of drug candidates.
机译:在这项研究中,基于终点的可溶性环氧化物水解酶(sEH)荧光分析被转换为在线连续流格式。在线生化检测系统(BCD)在线连接到液相色谱(LC)进行混合物分析。在线BCD基于流动系统,其中通过分析物与底物水解的竞争来检测sEH活性。通过荧光检测测量反应产物。与BCD数据平行,通过LC流出物的柱后分离获得了UV和MS数据。优化了缓冲液系统和试剂浓度,得到了稳定的在线BCD,具有良好的测定窗口和良好的灵敏度(S / N> 60)。通过LC–BCD获得的已知sEH抑制剂(sEHis)的功效与已发表的值有很好的相关性。 LC-BCD系统用于测试氧化性微粒体代谢如何影响三种sEHis的效力。与猪肝微粒体一起温育后,sEHis的几种代谢物通过MS进行了表征,而其各自的功效则通过BCD进行了测量。对于所有测试的化合物,均观察到活性代谢物。所开发的方法首次允许在混合物中检测sEHis,这为候选药物的开发提供了新的机会。

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