动物体内5-溴-2′-脱氧尿苷和5-碘-2′-脱氧尿苷的稳态动脉和肝静脉血浆浓度——可被内脏和内脏外清除的药物。

J G Wagner, P L Stetson, J A Knol, J C Andrews, S Walker-Andrews, C A Knutsen, N Johnson, D Prieskorn, P Terrio, Z Yang
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引用次数: 5

摘要

我们之前已经表明,5-氟尿嘧啶(FUra)在人体内遵循Michaelis-Menten消除动力学。在这篇文章中,我们证明了相关的含溴和含碘类似物在动物中遵循类似的动力学。报道了7只兔和5只狗在5种不同的BrdUrd输注速率下5-溴-2'-脱氧尿苷(BrdUrd)的稳态动脉(CssA)和肝静脉血浆(CssV)浓度。5-碘-2'-脱氧尿苷(IdUrd)在5只家兔和2只狗的动脉和肝静脉的稳态血浆浓度给予5种不同的IdUrd输注率。每组数据可以用非线性最小二乘法拟合到方程:(方程;其中Vm/Q为最大差值,(CssA) - (CssV), Km为米切里斯常数。比较了两种药物和不同物种的估计参数Vm/Q和Km,并与先前发表的8例癌症患者的氟尿嘧啶数据以相同方式得出的相同参数进行了比较。还估计了使内脏消除系统饱和所需的输注速率(Rs单位:mumol/kg/min)。对于BrdUrd,兔的Rs均值为1.23,狗的Rs均值为1.25 mumol/kg/min,两者基本相同。
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Steady-state arterial and hepatic venous plasma concentrations of 5-bromo-2'-deoxyuridine and 5-iodo-2'-deoxyuridine in animals--drugs which are subject to both splanchnic and extra-splanchnic elimination.

We have previously shown that 5-fluorouracil (FUra) in humans obeys Michaelis-Menten elimination kinetics. In this article we show that the related bromine and iodine-containing analogs in animals obey similar kinetics. Steady-state arterial (CssA) and hepatic venous plasma (CssV) concentrations of 5-bromo-2'-deoxyuridine (BrdUrd) are reported for 7 rabbits given 5 different infusion rates of BrdUrd and 5 dogs given 4 or 5 different infusion rates of BrdUrd. Steady-state arterial and hepatic venous plasma concentrations of 5-iodo-2'-deoxyuridine (IdUrd) are reported for 5 rabbits and 2 dogs given 5 different infusion rates of IdUrd. Each set of data could be fitted by a nonlinear least squares method to the equation: (equation; see text) where Vm/Q is the maximum difference, (CssA) - (CssV), and Km is the Michaelis constant. The estimated parameter Vm/Q and Km are compared for the two drugs and different species and also with the same parameters derived in the same manner from previously published data on fluorouracil in 8 cancer patients. The infusion rate needed to saturate the splanchnic elimination system (Rs in mumol/kg/min) was also estimated. For BrdUrd the mean value of Rs in the rabbit, namely 1.23, and in the dog, namely 1.25 mumol/kg/min are essentially the same.

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