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Cyclic interconversion of vitamin K1 and vitamin K1 23-epoxide in man.

机译:人体中维生素K1和维生素K1 23-环氧化物的循环互变。

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摘要

The disposition of a single intravenous bolus dose of 10 mg vitamin K1 and vitamin K1-2,3-epoxide were studied in two healthy subjects without and with 12 h pretreatment dose of phenprocoumon (0.4 mg/kg). For each compound administered alone the plasma concentration-time profile was adequately fitted by a biexponential equation, with an average terminal half-life of 2.0 and 1.15 h for the administered vitamin K and its 2,3-epoxide respectively. While vitamin K1 was measurable in plasma following administration of vitamin K1-2,3-epoxide, the epoxide was not detectable following administration of vitamin K1. Following pretreatment with phenprocoumon and after intravenous administration of vitamin K1, both the average half-life and area under the plasma concentration-time profile of vitamin K1 were marginally reduced to 1.5 h and 1.76 mg l-1 h respectively, while the plasma concentration of vitamin K1-2,3-epoxide was readily measurable and its half-life markedly prolonged to 14.7 h. Following pretreatment with phenprocoumon and after oral administration of vitamin K1-2,3-epoxide, no vitamin K1 was detectable in plasma and the half-life of the epoxide was 13.8 h. Based on area considerations the data suggest that either phenprocoumon does more than just inhibit the reduction of vitamin K1-2,3-epoxide to vitamin K1, or that the simple model describing the interconversion between vitamin K1 and its epoxide is inadequate. The same conclusion is drawn from the analysis of comparable data in dogs, obtained by Carlisle & Blaschke (1981).
机译:在两个健康受试者中,分别在未使用苯丙孕激素(12 mg / kg)和12 h苯丙酰胺的情况下研究了单次静脉推注剂量10 mg维生素K1和维生素K1-2,3-环氧化物的处置情况。对于每种单独给药的化合物,血浆浓度-时间曲线通过双指数方程式进行了拟合,维生素K及其2,3-环氧化合物的平均终末半衰期分别为2.0和1.15小时。维生素K1-2,3-环氧化物给药后血浆中可测量维生素K1,而维生素K1给药后未检测到环氧化物。在用苯丙酰胺预处理后,静脉注射维生素K1后,维生素K1的平均半衰期和血浆浓度-时间曲线下的面积分别略微降低至1.5 h和1.76 mg l-1 h,而血浆中维生素K1-2,3-环氧化物易于测量,其半衰期明显延长至14.7小时。在用苯丙酮原预处理后,口服维生素K1-2,3-环氧化物后,血浆中未检测到维生素K1,环氧化物的半衰期为13.8小时。基于面积的考虑,数据表明苯丙香酚不仅能抑制维生素K1-2,3-环氧化物还原为维生素K1,还不能简单地描述描述维生素K1及其环氧化物之间相互转化的简单模型。从Carlisle&Blaschke(1981)获得的狗的可比数据分析中得出了相同的结论。

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