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使用配备紫外光电二极管阵列和质谱检测的高效液相色谱法对潜在抗真菌药物3-(4-溴苯基)-5-乙酰氧基甲基-2,5-二氢呋喃-2-酮在小鼠尿液中的代谢谱进行分析。

Metabolic profiling of a potential antifungal drug, 3-(4-bromophenyl)-5-acetoxymethyl-2,5-dihydrofuran-2-one, in mouse urine using high-performance liquid chromatography with UV photodiode-array and mass spectrometric detection.

作者信息

Nobilis Milan, Pour Milan, Senel Petr, Pavlík Jan, Kunes Jirí, Voprsalová Marie, Kolárová Lenka, Holcapek Michal

机构信息

Institute of Experimental Biopharmaceutics, Joint Research Center of PRO.MED.CS Praha a.s. and Academy of Sciences of the Czech Republic, Heyrovského 1207, CZ-500 02 Hradec Králové, Czech Republic.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2007 Jun 15;853(1-2):10-9. doi: 10.1016/j.jchromb.2007.02.045. Epub 2007 Mar 14.

Abstract

3-(4-bromophenyl)-5-acetyloxymethyl-2,5-dihydrofuran-2-one (LNO-18-22) is a representative member of a novel group of potential antifungal drugs, derived from a natural 3,5-disubstituted butenolide, (-)incrustoporine, as a lead structure. This lipophilic compound is characterized by high in vitro antifungal activity and low acute toxicity. For the purpose of in vivo studies, a new bioanalytical high-performance liquid chromatographic method with UV photodiode-array and mass spectrometric detection (HPLC-PDA-MS), involving a direct injection of diluted mouse urine was developed and used in the evaluation of the metabolic profiling of this drug candidate. The separation of LNO-18-22 and its phase I metabolites was performed in 37 min on a 125 mmx4 mm chromatographic column with Purospher RP-18e using an acetonitrile-water gradient elution. Scan mode of UV detection (195-380 nm) was employed for the identification of the parent compound and its biotransformation products in the biomatrix. Finally, the identity of LNO-18-22 and its metabolites was confirmed using HPLC-MS analyses of the eluate. These experiments demonstrated the power of a comprehensive analytical approach based on the combination of xenobiochemical methods and the results from tandem HPLC-PDA-MS (chromatographic behaviour, UV and MS spectra of native metabolites versus synthetic standards). The chemical structures of five phase I LNO-18-22 metabolites and one phase II metabolite were elucidated in the mouse urine, with two of these metabolites having very unexpected structures.

摘要

3-(4-溴苯基)-5-乙酰氧甲基-2,5-二氢呋喃-2-酮(LNO-18-22)是一类新型潜在抗真菌药物的代表性成员,该类药物源自天然的3,5-二取代丁烯内酯(-)硬壳孢菌素,作为先导结构。这种亲脂性化合物具有高体外抗真菌活性和低急性毒性的特点。为了进行体内研究,开发了一种新的生物分析高效液相色谱法,采用紫外光电二极管阵列和质谱检测(HPLC-PDA-MS),直接进样稀释后的小鼠尿液,并用于评估该候选药物的代谢谱。LNO-18-22及其I相代谢产物在125 mm×4 mm的Purospher RP-18e色谱柱上,使用乙腈-水梯度洗脱,37分钟内完成分离。采用紫外检测的扫描模式(195 - 380 nm)来鉴定生物基质中的母体化合物及其生物转化产物。最后,通过对洗脱液的HPLC-MS分析确认了LNO-18-22及其代谢产物的身份。这些实验证明了基于异生化方法与串联HPLC-PDA-MS结果(天然代谢产物与合成标准品的色谱行为、紫外和质谱光谱)相结合的综合分析方法的强大功能。在小鼠尿液中阐明了LNO-18-22的5种I相代谢产物和1种II相代谢产物的化学结构,其中有两种代谢产物具有非常意外的结构。

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