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氟达拉滨对阿糖胞苷药代动力学和药效学的影响:对持续输注方案的启示。

Influence of fludarabine on pharmacokinetics and pharmacodynamics of cytarabine: implications for a continuous infusion schedule.

作者信息

Seymour J F, Huang P, Plunkett W, Gandhi V

机构信息

Department of Clinical Investigation, University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Clin Cancer Res. 1996 Apr;2(4):653-8.

PMID:9816215
Abstract

Arabinosylcytosine (ara-C) is a cytotoxic agent with major activity against acute leukemias. To exert this effect, it must first be phosphorylated to its active 5'-triphosphate, ara-CTP, which is incorporated into DNA. Our previous studies demonstrated that preincubation with arabinosyl-2-fluoroadenine (F-ara-A) increased the rate of ara-CTP accumulation in leukemia cells when incubated with 10 microM ara-C. Such concentrations of ara-C are readily obtained during intermittent bolus infusions of ara-C, and clinical trials were conducted using fludarabine in combination with 2-h infusions of intermediate-dose ara-C. During continuous infusion of ara-C, however, serum ara-C levels are <10 microM. Because the effectiveness of ara-C depends on the levels of intracellular ara-CTP and its incorporation into DNA, we sought to investigate the influence of fludarabine on pharmacodynamics of ara-C at concentrations of ara-C achieved during continuous infusion. Using the K562 human leukemic cell line, we established that incubation with 30 microM F-ara-A was able to modulate intracellular dNTP pools and achieve maximum enhancement of ara-CTP levels at all concentrations of ara-C tested (0.3-10.0 microM). The relative enhancement of ara-CTP concentrations ranged from 2.2- to 2.8-fold. Combination of F-ara-A with 1.0 and 3.0 microM ara-C also increased the incorporation of ara-CTP into DNA. To model the influence of F-ara-A on continuous infusion ara-C, cells were incubated with 1 microM ara-C alone or in combination with F-ara-A. The F-ara-A-incubated cells accumulated effective intracellular concentrations of F-ara-ATP, which resulted in greatly increased intracellular ara-CTP levels. These studies demonstrate the capacity of clinically attainable concentrations of F-ara-ATP to enhance the formation of ara-CTP at concentrations of ara-C that are achieved during a continuous infusion schedule. Given the important role intracellular ara-CTP concentrations and ara-CMP incorporation into DNA have on the ultimate cytotoxic capacity of ara-C against acute myelogenous leukemia blasts, these studies suggest a promising pharmacological model for improving the efficacy of the continuous infusion ara-C regimen.

摘要

阿糖胞苷(ara-C)是一种细胞毒性药物,对急性白血病具有主要活性。为发挥这种作用,它必须首先磷酸化为其活性的5'-三磷酸形式,即阿糖胞苷三磷酸(ara-CTP),然后整合到DNA中。我们之前的研究表明,在与10微摩尔/升阿糖胞苷孵育时,预先用阿糖基-2-氟腺嘌呤(F-ara-A)孵育可提高白血病细胞中ara-CTP的积累速率。在间歇性大剂量输注阿糖胞苷期间很容易达到这种阿糖胞苷浓度,并且进行了使用氟达拉滨与2小时输注中等剂量阿糖胞苷联合的临床试验。然而,在持续输注阿糖胞苷期间,血清阿糖胞苷水平<10微摩尔/升。由于阿糖胞苷的有效性取决于细胞内ara-CTP的水平及其整合到DNA中的情况,我们试图研究在持续输注期间达到的阿糖胞苷浓度下氟达拉滨对阿糖胞苷药效学的影响。使用K562人白血病细胞系,我们确定与30微摩尔/升F-ara-A孵育能够调节细胞内脱氧核苷酸三磷酸池,并在所有测试的阿糖胞苷浓度(0.3 - 10.0微摩尔/升)下实现ara-CTP水平的最大增强。ara-CTP浓度的相对增强范围为2.2至2.8倍。F-ara-A与1.0和3.0微摩尔/升阿糖胞苷联合也增加了ara-CTP整合到DNA中的量。为模拟F-ara-A对持续输注阿糖胞苷的影响,将细胞单独与1微摩尔/升阿糖胞苷或与F-ara-A联合孵育。经F-ara-A孵育的细胞积累了有效的细胞内F-ara-ATP浓度,这导致细胞内ara-CTP水平大幅增加。这些研究证明了临床上可达到的F-ara-ATP浓度在持续输注方案中达到的阿糖胞苷浓度下增强ara-CTP形成的能力。鉴于细胞内ara-CTP浓度和阿糖胞苷单磷酸整合到DNA中对阿糖胞苷对急性髓性白血病原始细胞的最终细胞毒性能力具有重要作用,这些研究提出了一个有望提高持续输注阿糖胞苷方案疗效的药理学模型。

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