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1
A Critical Review on Clinical Application of Separation Techniques for Selective Recognition of Uracil and 5-Fluorouracil.用于尿嘧啶和5-氟尿嘧啶选择性识别的分离技术临床应用的批判性综述
Indian J Clin Biochem. 2016 Mar;31(1):3-12. doi: 10.1007/s12291-015-0482-4. Epub 2015 Feb 15.
2
Ultratrace analysis of uracil and 5-fluorouracil by molecularly imprinted polymer brushes grafted to silylated solid-phase microextraction fiber in combination with complementary molecularly imprinted polymer-based sensor.通过接枝到硅烷化固相微萃取纤维上的分子印迹聚合物刷结合基于互补分子印迹聚合物的传感器对尿嘧啶和5-氟尿嘧啶进行超痕量分析。
Biomed Chromatogr. 2009 May;23(5):499-509. doi: 10.1002/bmc.1145.
3
LC-MS/MS method for simultaneous analysis of uracil, 5,6-dihydrouracil, 5-fluorouracil and 5-fluoro-5,6-dihydrouracil in human plasma for therapeutic drug monitoring and toxicity prediction in cancer patients.用于同时分析人血浆中尿嘧啶、5,6-二氢尿嘧啶、5-氟尿嘧啶和5-氟-5,6-二氢尿嘧啶的LC-MS/MS方法,用于癌症患者的治疗药物监测和毒性预测。
Biomed Chromatogr. 2013 Jan;27(1):7-16. doi: 10.1002/bmc.2741. Epub 2012 Mar 27.
4
Recent advances and applications of molecularly imprinted polymers in solid-phase extraction for real sample analysis.近年来分子印迹聚合物在固相萃取中用于实际样品分析的进展和应用。
J Sep Sci. 2021 Jan;44(1):274-309. doi: 10.1002/jssc.202000832.
5
Improved analysis of 5-Fluorouracil and 5,6-dihydro-5-Fluorouracil by HPLC with diode array detection for determination of cellular dihydropyrimidine dehydrogenase activity and pharmacokinetic profiling.采用带二极管阵列检测的高效液相色谱法对5-氟尿嘧啶和5,6-二氢-5-氟尿嘧啶进行改进分析,以测定细胞二氢嘧啶脱氢酶活性和药代动力学特征。
Ther Drug Monit. 2005 Jun;27(3):362-8. doi: 10.1097/01.ftd.0000162016.11148.1b.
6
[Review of methods for determination of dihydropyrimidine dehydrogenase and possible application in screening previous chemotheraphy with 5-fluorouracil].[二氢嘧啶脱氢酶测定方法的综述及其在5-氟尿嘧啶既往化疗筛查中的可能应用]
Przegl Lek. 2012;69(9):694-7.
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The dihydrouracil/uracil ratio in plasma, clinical and genetic analysis for screening of dihydropyrimidine dehydrogenase deficiency in colorectal cancer patients treated with 5-fluorouracil.血浆中二氢尿嘧啶/尿嘧啶比值、临床及基因分析用于筛查接受5-氟尿嘧啶治疗的结直肠癌患者的二氢嘧啶脱氢酶缺乏症
Pathol Biol (Paris). 2009 Sep;57(6):470-6. doi: 10.1016/j.patbio.2008.05.001. Epub 2008 Jul 10.
8
A simple and rapid high-performance liquid chromatographic (HPLC) method for 5-fluorouracil (5-FU) assay in plasma and possible detection of patients with impaired dihydropyrimidine dehydrogenase (DPD) activity.一种用于检测血浆中5-氟尿嘧啶(5-FU)的简单快速的高效液相色谱(HPLC)方法,以及对二氢嘧啶脱氢酶(DPD)活性受损患者的可能检测。
J Clin Pharm Ther. 2004 Aug;29(4):307-15. doi: 10.1111/j.1365-2710.2004.00569.x.
9
Rapid identification of dihydropyrimidine dehydrogenase deficiency by using a novel 2-13C-uracil breath test.使用新型2-13C-尿嘧啶呼气试验快速鉴定二氢嘧啶脱氢酶缺乏症
Clin Cancer Res. 2004 Apr 15;10(8):2652-8. doi: 10.1158/1078-0432.ccr-03-0374.
10
Development, validation and application of a novel liquid chromatography tandem mass spectrometry assay measuring uracil, 5,6-dihydrouracil, 5-fluorouracil, 5,6-dihydro-5-fluorouracil, α-fluoro-β-ureidopropionic acid and α-fluoro-β-alanine in human plasma.一种用于测定人血浆中尿嘧啶、5,6-二氢尿嘧啶、5-氟尿嘧啶、5,6-二氢-5-氟尿嘧啶、α-氟-β-脲基丙酸和α-氟-β-丙氨酸的新型液相色谱串联质谱分析法的开发、验证及应用
J Pharm Biomed Anal. 2017 Aug 5;142:125-135. doi: 10.1016/j.jpba.2017.04.055. Epub 2017 May 6.

本文引用的文献

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[Distribution of 5-fluorouracil between lymphocytes and blood plasma].[5-氟尿嘧啶在淋巴细胞与血浆之间的分布]
Ukr Biokhim Zh (1999). 2013 Jul-Aug;85(4):94-7.
2
Molecularly imprinted polymer for recognition of 5-fluorouracil by RNA-type nucleobase pairing.通过 RNA 型碱基配对识别 5-氟尿嘧啶的分子印迹聚合物。
Anal Chem. 2013 Sep 3;85(17):8304-12. doi: 10.1021/ac401598k. Epub 2013 Aug 15.
3
Comparative evaluation of the My5-FU™ immunoassay and LC-MS/MS in monitoring the 5-fluorouracil plasma levels in cancer patients.比较 My5-FU™ 免疫分析法和 LC-MS/MS 在监测癌症患者 5-氟尿嘧啶血浆水平中的应用。
Clin Chem Lab Med. 2013 Aug;51(8):1681-8. doi: 10.1515/cclm-2012-0641.
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Quantitative determination of capecitabine and its six metabolites in human plasma using liquid chromatography coupled to electrospray tandem mass spectrometry.采用液相色谱-电喷雾串联质谱法定量测定人血浆中西妥昔单抗及其 6 种代谢物。
J Chromatogr B Analyt Technol Biomed Life Sci. 2013 Jan 15;913-914:30-40. doi: 10.1016/j.jchromb.2012.11.033. Epub 2012 Dec 7.
5
Spectrophotometric methods as a novel screening approach for analysis of dihydropyrimidine dehydrogenase activity before treatment with 5-fluorouracil chemotherapy.分光光度法作为一种新的筛选方法,用于分析 5-氟尿嘧啶化疗前二氢嘧啶脱氢酶的活性。
J Physiol Pharmacol. 2012 Aug;63(4):411-21.
6
Validation of an ultra-high performance liquid chromatography tandem mass spectrometric method for quantifying uracil and 5,6-dihydrouracil in human plasma.用于定量测定人血浆中尿嘧啶和5,6-二氢尿嘧啶的超高效液相色谱串联质谱法的验证
J Chromatogr Sci. 2012 Nov-Dec;50(10):877-84. doi: 10.1093/chromsci/bms085. Epub 2012 Jun 11.
7
Development and utilization of a combined LC-UV and LC-MS/MS method for the simultaneous analysis of tegafur and 5-fluorouracil in human plasma to support a phase I clinical study of oral UFT®/leucovorin.建立并验证了一种同时测定人血浆中替加氟和 5-氟尿嘧啶的 LC-UV 和 LC-MS/MS 法,以支持口服 UFT/亚叶酸的 I 期临床研究。
J Chromatogr B Analyt Technol Biomed Life Sci. 2012 Jun 1;898:32-7. doi: 10.1016/j.jchromb.2012.04.010. Epub 2012 Apr 20.
8
LC-MS/MS method for simultaneous analysis of uracil, 5,6-dihydrouracil, 5-fluorouracil and 5-fluoro-5,6-dihydrouracil in human plasma for therapeutic drug monitoring and toxicity prediction in cancer patients.用于同时分析人血浆中尿嘧啶、5,6-二氢尿嘧啶、5-氟尿嘧啶和5-氟-5,6-二氢尿嘧啶的LC-MS/MS方法,用于癌症患者的治疗药物监测和毒性预测。
Biomed Chromatogr. 2013 Jan;27(1):7-16. doi: 10.1002/bmc.2741. Epub 2012 Mar 27.
9
A rapid HPLC-ESI-MS/MS method for determination of dihydrouracil/uracil ratio in plasma: evaluation of toxicity to 5-flurouracil in patients with gastrointestinal cancer.一种快速 HPLC-ESI-MS/MS 法测定血浆中二氢尿嘧啶/尿嘧啶比值:评估其对胃肠道癌患者 5-氟尿嘧啶毒性。
Ther Drug Monit. 2012 Feb;34(1):59-66. doi: 10.1097/FTD.0b013e318240405f.
10
The achievement of mass balance by simultaneous quantification of floxuridine prodrug, floxuridine, 5-fluorouracil, 5-dihydrouracil, α-fluoro-β-ureidopropionate, α-fluoro-β-alanine using LC-MS.采用 LC-MS 同时定量检测氟尿苷前药、氟尿嘧啶、5-氟尿嘧啶、5-二氢尿嘧啶、α-氟-β-脲基丙酸、α-氟-β-丙氨酸,实现质量平衡。
J Chromatogr B Analyt Technol Biomed Life Sci. 2011 Apr 15;879(13-14):915-20. doi: 10.1016/j.jchromb.2011.02.045. Epub 2011 Mar 5.

用于尿嘧啶和5-氟尿嘧啶选择性识别的分离技术临床应用的批判性综述

A Critical Review on Clinical Application of Separation Techniques for Selective Recognition of Uracil and 5-Fluorouracil.

作者信息

Pandey Khushaboo, Dubey Rama Shankar, Prasad Bhim Bali

机构信息

Department of Biochemistry, Faculty of Science, Banaras Hindu University, Varanasi, 221005 Uttar Pradesh India.

Tilkamanjhi Bhagalpur University, Bhagalpur, 812007 Bihar India.

出版信息

Indian J Clin Biochem. 2016 Mar;31(1):3-12. doi: 10.1007/s12291-015-0482-4. Epub 2015 Feb 15.

DOI:10.1007/s12291-015-0482-4
PMID:26855482
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4731362/
Abstract

The most important objectives that are frequently found in bio-analytical chemistry involve applying tools to relevant medical/biological problems and refining these applications. Developing a reliable sample preparation step, for the medical and biological fields is another primary objective in analytical chemistry, in order to extract and isolate the analytes of interest from complex biological matrices. Since, main inborn errors of metabolism (IEM) diagnosable through uracil analysis and the therapeutic monitoring of toxic 5-fluoruracil (an important anti-cancerous drug) in dihydropyrimidine dehydrogenase deficient patients, require an ultra-sensitive, reproducible, selective, and accurate analytical techniques for their measurements. Therefore, keeping in view, the diagnostic value of uracil and 5-fluoruracil measurements, this article refines several analytical techniques involved in selective recognition and quantification of uracil and 5-fluoruracil from biological and pharmaceutical samples. The prospective study revealed that implementation of molecularly imprinted polymer as a solid-phase material for sample preparation and preconcentration of uracil and 5-fluoruracil had proven to be effective as it could obviates problems related to tedious separation techniques, owing to protein binding and drastic interferences, from the complex matrices in real samples such as blood plasma, serum samples.

摘要

生物分析化学中经常出现的最重要目标包括将工具应用于相关医学/生物学问题并完善这些应用。为医学和生物学领域开发一个可靠的样品制备步骤是分析化学中的另一个主要目标,以便从复杂的生物基质中提取和分离感兴趣的分析物。由于通过尿嘧啶分析可诊断的主要先天性代谢缺陷(IEM)以及对二氢嘧啶脱氢酶缺乏患者体内毒性5-氟尿嘧啶(一种重要的抗癌药物)的治疗监测,需要超灵敏、可重现、选择性和准确的分析技术来进行测量。因此,鉴于尿嘧啶和5-氟尿嘧啶测量的诊断价值,本文完善了几种用于从生物和药物样品中选择性识别和定量尿嘧啶和5-氟尿嘧啶的分析技术。前瞻性研究表明,将分子印迹聚合物用作样品制备和尿嘧啶及5-氟尿嘧啶预浓缩的固相材料已被证明是有效的,因为它可以避免与繁琐的分离技术相关的问题,这些问题源于实际样品(如血浆、血清样品)复杂基质中的蛋白质结合和严重干扰。