Wu A T, Schwandt H J, Finn C, Sadée W
Res Commun Chem Pathol Pharmacol. 1976 May;14(1):89-102.
A gas chromatographic method was developed for ftorafur (Ft) detection in plasma and urine with a sensitivity of 1 mug/ml. Specific determination of its metabolite 5-fluorouracil (FU) with a sensitivity of 1 ng/ml was achieved by column chromatographic separation from Ft and subsequent gas chromatography-mass spectrometry of bis-silyl-FU in the selected ion mode (GC-MS-SIM) using bis-15N-FU as internal standard. Intravenous injections of 2-14C-Ft and 2',5'-14C-Ft were given to rats and rabbits respectively, and plasma and urine were analyzed for Ft, and 14C activity. Unchanged Ft accounted for most of the 14C activity in plasma, while FU concentrations were below 0.15% and 0.4% relative to Ft concentrations in the rabbit and the rat, respectively. 30-60% of the urinary 14C activity was unchanged Ft and less than 0.2% FU. The significance or low FU levels is discussed in view of the hypothesis that Ft acts as a transport form of its metabolite FU.
建立了一种气相色谱法,用于检测血浆和尿液中的呋喃氟尿嘧啶(Ft),灵敏度为1微克/毫升。通过柱色谱从Ft中分离其代谢物5-氟尿嘧啶(FU),并以双-15N-FU为内标,采用选择离子模式(GC-MS-SIM)对双硅烷化-FU进行气相色谱-质谱分析,实现了对其灵敏度为1纳克/毫升的特异性测定。分别给大鼠和家兔静脉注射2-14C-Ft和2',5'-14C-Ft,并分析血浆和尿液中的Ft及14C活性。血浆中大部分14C活性由未变化的Ft构成,而家兔和大鼠中FU浓度分别相对于Ft浓度低于0.15%和0.4%。尿中14C活性的30 - 60%为未变化的Ft,FU含量低于0.2%。鉴于Ft作为其代谢物FU的转运形式这一假说,对低FU水平的意义进行了讨论。