首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >HPLC Determination of Thiopurine Nucleosides and Nucleotides in Vivo in Lymphoblasts following Mercaptopurine Therapy
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HPLC Determination of Thiopurine Nucleosides and Nucleotides in Vivo in Lymphoblasts following Mercaptopurine Therapy

机译:巯基嘌呤治疗后,高效液相色谱法测定淋巴母细胞中硫嘌呤核苷和核苷酸的体内含量

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Background: Mercaptopurine is a prodrug requiring intracellular activation to thiopurine nucleotides to exert antileukemic effect. We developed a reversed-phase liquid chromatographic assay for the quantification of mercaptopurine, thioguanine, and methylmercaptopurine nucleoside and nucleotide concentrations in the target tissue, the leukemic lymphoblast.Methods: Leukemic blasts were isolated from peripheral blood and bone marrow by a standard Ficoll-hypaque procedure. Proteins were removed by ultrafiltration in the presence of dithiothreitol. Thiopurine ribonucleotides were converted into their respective ribonucleosides by treatment of ultrafiltrate with acid phosphatase. Thiopurine nucleosides and bases were measured by direct injection of ultrafiltrate into the chromatographic system. Thiopurine nucleotide concentrations were calculated by subtracting the thiopurine nucleoside concentrations measured after treatment with acid phosphatase from those measured after direct injection of ultrafiltrate in the chromatographic system. Analytes were separated on a C18 Supelco column with ammonium phosphate-methanol eluent coupled with ultraviolet detection.Results: CVs for intra- and interday precision were 1.1–14% (median, 4.9%), and recovery of added analyte was 89–126% (median, 105%) at low and high concentrations of analytes, except for mercaptopurine riboside. The median signal for each of the five metabolites in lymphoblast samples was 98% (range, 80–106%) of that in water. Detection limits for thiopurine bases and nucleosides ranged from 0.5 to 4.5 pmol/5 × 106 cells.Conclusions: This method is suitable for measurement of thiopurine metabolite concentrations in lymphoblasts in children with acute lymphoblastic leukemia following a single dose of intravenous mercaptopurine.
机译:背景:巯基嘌呤是一种前药,需要对硫嘌呤核苷酸进行细胞内活化以发挥抗白血病作用。我们开发了一种反相液相色谱法,用于定量检测目标组织白血病淋巴母细胞中巯基嘌呤,硫代鸟嘌呤和甲基巯基嘌呤的核苷和核苷酸浓度。程序。在二硫苏糖醇存在下通过超滤去除蛋白质。通过用酸性磷酸酶处理超滤液,将硫嘌呤核糖核苷酸转化成它们各自的核糖核苷。通过将超滤液直接注入色谱系统中来测定硫嘌呤的核苷和碱基。通过从色谱系统中直接注射超滤液后测得的硫代嘌呤核苷酸浓度减去酸性磷酸酶处理后测得的硫代嘌呤核苷浓度,计算出硫嘌呤核苷酸浓度。在C18 Supelco色谱柱上用磷酸铵-甲醇洗脱液和紫外检测分离分析物。结果:日间和日间精度的CV为1.1–14%(中位数为4.9%),添加的分析物的回收率为89–126% (中位数为105%)在低和高浓度的分析物上,巯基嘌呤核糖苷除外。淋巴母细胞样品中五个代谢物的信号中值分别为水中信号的98%(范围80-106%)。硫嘌呤碱基和核苷的检出限为0.5至4.5 pmol / 5×106细胞。结论:该方法适用于单剂量静脉注射巯基嘌呤后急性淋巴细胞白血病儿童的淋巴母细胞中硫嘌呤代谢产物浓度的测定。

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