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Food‐effect study on uracil and dihydrouracil plasma levels as marker for dihydropyrimidine dehydrogenase activity in human volunteers

机译:尿嘧啶和二氢尿嘧啶血浆水平作为人类志愿者二氢嘧啶脱氢酶活性的尿嘧啶和二氢尿嘧啶水平的食物效应研究

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摘要

Aims This study aimed to determine the effect of food intake on uracil and dihydrouracil plasma levels. These levels are a promising marker for dihydropyrimidine dehydrogenase activity and for individualizing fluoropyrimidine anticancer therapy. Methods A randomized, cross‐over study in 16 healthy volunteers was performed, in which subjects were examined in fasted and fed state on two separate days. In fed condition, a high‐fat, high‐caloric breakfast was consumed between 8:00?h and 8:30?h. Whole blood for determination of uracil, dihydrouracil and uridine plasma levels was drawn on both test days at predefined time points between 8:00?h and 13:00?h. Results Uracil levels were statistically significantly different between fasting and fed state. At 13:00?h, the mean uracil level in fasting state was 12.6?±?3.7?ng?ml ?1 and after a test meal 9.4?±?2.6?ng?ml ?1 ( P ??0.001). Dihydrouracil levels were influenced by food intake as well (mean dihydrouracil level at 13:00?h in fasting state 147.0?±?36.4?ng?ml ?1 and in fed state 85.7?±?22.1?ng?ml ?1 , P ??0.001). Uridine plasma levels showed curves with similar patterns as for uracil. Conclusions It was shown that both uracil and dihydrouracil levels were higher in fasting state than in fed state. This is hypothesized to be an direct effect of uridine plasma levels, which were previously shown to be elevated in fasting state and reduced after intake of food. These findings show that, when assessing plasma uracil and dihydrouracil levels for adaptive fluoropyrimidine dosing in clinical practice, sampling should be done between 8:00?h and 9:00?h after overnight fasting to avoid bias caused by circadian rhythm and food effects.
机译:目的这项研究旨在确定食物摄入对尿嘧啶和二氢脲血浆水平的影响。这些水平是用于二氢嘧啶脱氢酶活性的有希望的标志物和用于个性化氟嘧啶抗癌治疗。方法进行16种健康志愿者的随机交叉研究,在两个单独的日子中以禁食和喂养状态检查受试者。在美联储条件下,消费高脂,高热早餐8:00和8:30?H。用于测定尿嘧啶的全血,在8:00?H和13:00之间的预定时间点的测试天中抽出二氢尿嘧啶和尿苷等离子体水平。结果禁食和美联储状态之间的尿嘧啶水平在统计上显着差异。在13:00?h,禁食状态下的平均尿嘧啶水平为12.6?±3.7?ng?ml?1和测试膳食后9.4?±2.6?ng?ml?1(p≤≤0.001) 。 Syhyrouracil水平的水平也受到食物摄入的影响(平均二氢水平在禁食状态下在13:00的平均水平147.0±3 36.4?Ng?1和喂养状态85.7?±22.1〜22.1? ?& 0.001)。尿苷等离子体水平显示曲线,其具有与尿嘧啶相似的模式。结论表明,尿嘧啶和二氢尿嘧啶水平在禁食状态下比喂养状态较高。这被假设为尿苷等离子体水平的直接效果,其先前所示以在禁食状态下升高并在摄入食物后减少。这些发现表明,当评估临床实践中适应性氟嘧啶的剂量的血浆尿嘧啶和二氢尿嘧啶水平时,在过夜禁食后应在8:00?H和9:00之间进行取样以避免昼夜节律和食物效果引起的偏差。

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  • 作者单位

    Division of PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Pharmacy &

    PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Division of PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Division of PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Clinical ChemistryThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Pharmacy &

    PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Pharmacy &

    PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Pharmacy &

    PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Pharmacy &

    PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

    Department of Clinical Pharmacy and ToxicologyLeiden University Medical CenterLeiden The Netherlands;

    Department of Gastrointestinal Oncology Division of Medical OncologyThe Netherlands Cancer;

    Division of PharmacologyThe Netherlands Cancer InstituteAmsterdam The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

    dihydropyrimidine dehydrogenase; dihydrouracil; food‐effect study; uracil; uridine;

    机译:二氢嘧啶脱氢酶;二氢呋喃;食品效应研究;尿嘧啶;尿苷;

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