Hoffmann K J, Weidolf L
Biomed Mass Spectrom. 1985 Aug;12(8):414-23. doi: 10.1002/bms.1200120811.
After intragastric administration of 100 mumol kg-1 [14C]felodipine to rats eight urinary metabolites were isolated. Batch extraction at pH 2.2 and semipreparative reversed-phase liquid chromatography were used for trace enrichment of the metabolites. Trimethylsilylation followed by transesterification with diazomethane blocked the carboxylic acid and alcohol groups selectively before gas chromatography/mass spectrometry (GC/MS) in the electron impact (EI) mode. Deuterated derivatives of the metabolites and chemical ionization measurements added complementary structural information. All metabolites reported in this study were formed from oxidized felodipine by ester hydrolysis. Hydroxylation of the pyridine methyl group represented an important metabolic pathway and metabolites oxidized to the corresponding carboxylic acids were detected as well. Lactone formation from hydroxy acid metabolites in urine as a possible analytical artefact is discussed.
给大鼠胃内注射100 μmol kg-1 [14C]非洛地平后,分离出8种尿代谢物。采用pH 2.2条件下的分批萃取和半制备反相液相色谱法对代谢物进行痕量富集。在电子轰击(EI)模式下进行气相色谱/质谱(GC/MS)分析之前,先进行三甲基硅烷化,然后用重氮甲烷进行酯交换反应,选择性地封闭羧酸和醇基团。代谢物的氘代衍生物和化学电离测量提供了补充结构信息。本研究报道的所有代谢物均由非洛地平氧化经酯水解形成。吡啶甲基的羟基化是一条重要的代谢途径,同时也检测到了氧化为相应羧酸的代谢物。讨论了尿中羟基酸代谢物形成内酯作为一种可能的分析假象。