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The pharmacokinetics of cyclophosphamide phosphoramide mustard and nor-nitrogen mustard studied by gas chromatography in patients receiving cyclophosphamide therapy

机译:气相色谱法研究环磷酰胺环磷酰胺芥子气和氮芥子气的药代动力学

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摘要

>1 Simple, accurate and specific gas-chromatographic methods for the estimation of derivatized phosphoramide and non-nitrogen mustards utilizing alkali-flame ionization detection are described.>2 The pharmacokinetics in plasma of cyclophosphamide, phosphoramide mustard, nor-nitrogen mustard and nitrobenzyl pyridine alkylating activity were investigated following administration of cyclophosphamide by intravenous and oral routes to patients with malignant disease>3 The mean T½ for cyclophosphamide was 8.88 h (s.d. 1.25 h) and the apparent volume of distribution (Vdβ) was 0.74 l kg-1 (s.d. 0.16 l kg-1).>4 The decline in plasma concentration of phosphoramide mustard was biphasic, the longer T½ being 8.68 h (s.d. 2.50 h). This was not significantly different from that of cyclophosphamide. This could indicate that the true biological T½ for phosphoramide mustard is identical with or shorter than that of cyclophosphamide.>5 The plasma concentrations of phosphoramide mustard following cyclophosphamide doses of known therapeutic efficacy are probably insufficient to produce important cytotoxic effects. This suggests that if phosphoramide mustard is the major alkylating metabolite derived from cyclophosphamide, it is transported in the blood in precursor form.>6 The mean plasma T½ of nor-nitrogen mustard was 3.31 h (s.d. 1.60 h) which was significantly different from that of cyclophosphamide.>7 The mean plasma T½ of the nitrobenzylpyridine alkylating activity was 9.81 h (s.d. 4.18 h) and did not significantly differ from that of cyclophosphamide. Although the area under the plasma alkylating activity concentration, time curve is related to the T½ of cyclophosphamide, the alkylating activity does not reflect the concentrations of the two plasma metabolites measured.
机译:> 1 描述了使用碱火焰电离检测法估算衍生化的磷酰胺和非氮芥子气的简单,准确和特异性的气相色谱方法。> 2 对恶性疾病患者通过静脉和口服途径给予环磷酰胺后,研究了环磷酰胺,磷酰胺芥末,正氮芥子和硝基苄基吡啶的烷基化活性> 3 。环磷酰胺的平均T½为8.88 h(标准偏差1.25 h) )和表观分布体积(Vdβ)为0.74 l kg -1 (sd 0.16 l kg -1 )。> 4 磷酰胺芥菜的血浆浓度是双相的,较长的T½为8.68小时(标准偏差2.50小时)。这与环磷酰胺没有显着差异。这可能表明磷酰胺芥末的真正生物学T½与环磷酰胺相同或比环磷酰胺短。> 5 已知治疗效果的环磷酰胺剂量后,磷酰胺芥末的血浆浓度可能不足以产生重要的细胞毒性作用。这表明如果磷酰胺芥子是环磷酰胺衍生的主要烷基化代谢产物,它以前体形式在血液中运输。> 6 氮芥子的平均血浆T½为3.31 h(sd 1.60 h) > 7 。硝基苄基吡啶烷基化活性的平均血浆T½为9.81 h(sd 4.18 h),与环磷酰胺的血浆T1 / 2无显着差异。尽管血浆烷基化活性浓度下的面积,时间曲线与环磷酰胺的T½有关,但烷基化活性并不反映所测得的两种血浆代谢物的浓度。

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