De Bruijn E A, Geng Y, Hermans J, Driessen O
Department of Pharmacology, University of Leiden, The Netherlands.
Int J Cancer. 1990 May 15;45(5):935-9. doi: 10.1002/ijc.2910450526.
Influence of the 2 antimetabolites used in the CMF-regimen, methotrexate (MTX, M) and fluorouracil (FUra, F) on in vivo pharmacokinetics of orally administered cyclophosphamide (CY, C), were studied in WAG/Rij rats. Blood plasma concentrations of CY following oral administration were monitored in single-agent CY, in CY + MTX (CM), in CY + FUra (CF) and in CY + MTX + FUra (CMF) treatments. Each treatment group consisted of at least 10 rats. CY was determined in 50 microliters of plasma by capillary gas chromatography on the first day of chemotherapy. Statistical analysis of blood plasma concentration data revealed a significant influence of both MTX and FUra on CY input/output function (p:0.01). MTX and FUra significantly increased the area under the plasma concentration time-curve, whereas tmax was significantly prolonged in CF and CMF treatment groups (p:0.01). It is suggested that MTX and FUra interact at the site of CY pre-systemic metabolism, including first-pass metabolism, subsequently resulting in prolonged absorption.
在WAG/Rij大鼠中,研究了CMF方案中使用的两种抗代谢药物甲氨蝶呤(MTX,M)和氟尿嘧啶(FUra,F)对口服环磷酰胺(CY,C)体内药代动力学的影响。在单药CY、CY + MTX(CM)、CY + FUra(CF)和CY + MTX + FUra(CMF)治疗中监测口服给药后CY的血浆浓度。每个治疗组至少由10只大鼠组成。在化疗第一天,通过毛细管气相色谱法在50微升血浆中测定CY。血浆浓度数据的统计分析显示,MTX和FUra对CY的输入/输出功能均有显著影响(p:0.01)。MTX和FUra显著增加了血浆浓度-时间曲线下面积,而在CF和CMF治疗组中tmax显著延长(p:0.01)。提示MTX和FUra在CY的系统前代谢部位(包括首过代谢)相互作用,随后导致吸收延长。