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使用液相色谱-串联质谱法对大鼠血浆中寡核苷酸类大分子进行生物分析的策略。

Strategies for bioanalysis of an oligonucleotide class macromolecule from rat plasma using liquid chromatography-tandem mass spectrometry.

作者信息

Zhang Guodong, Lin Jian, Srinivasan Karthik, Kavetskaia Olga, Duncan J Neil

机构信息

College of Pharmacy, University of Georgia, Athens, Georgia 30602, USA.

出版信息

Anal Chem. 2007 May 1;79(9):3416-24. doi: 10.1021/ac0618674. Epub 2007 Mar 30.

Abstract

Electrospray ionization (ESI) liquid chromatography-tandem mass spectrometry (LC/MS/MS) assays provide high-throughput and selective methods for quantitation of small molecules. Use of LC/MS/MS assays for macromolecules, like oligonucleotides, is challenging due to lack of sensitivity and low analyte recovery from biomatrixes. Due to this fact, the method of choice for oligonucleotides quantitation remains hybridization-based ligand-binding assays. These biological assays usually possess high sensitivity but low selectivity and narrow dynamic range. They also require optimizing suitable "capture and detection" probes, which can be prohibitively time-consuming and expensive in a drug discovery lead-optimization scenario. In this paper, we present a unique LC/MS/MS assay for a model phosphorothioate backbone oligodeoxynucleotide (ODN) drug (7692 amu) from rat plasma. Multiple analytical challenges were encountered. The strategies used to solve these challenges should prove useful to scientists pursuing mass spectrometry (MS) to quantitate oligonucleotides. The challenges include analyte multiple charging and cation adduction (reduced sensitivity), oxidation of analyte on drying and high protein binding (low recovery), ODN affinity to exposed silica (low chromatographic reproducibility and high carryover), nonspecific binding of analyte to containers (low storage stability), and optimization/synthesis of an appropriate internal standard (interference and cross-talk). A buffer (7 mM triethylamine and 3 mM ammonium formate)/methanol, 50:50 (v/v), was used as an ESI-MS infusion solvent and produced a sharp multiple charge-state distribution. The sample extraction method combined a phenol/chloroform liquid-liquid extraction and solid-phase extraction steps, which improved the absolute recovery to >70%. The method was validated in the range of 5-2000 ng/mL and had precision (percent relative standard deviation)<10.1% and accuracy (percent relative error)<11.4%.

摘要

电喷雾电离(ESI)液相色谱 - 串联质谱(LC/MS/MS)分析法为小分子定量提供了高通量和选择性的方法。由于缺乏灵敏度以及生物基质中分析物回收率低,将LC/MS/MS分析法用于大分子(如寡核苷酸)具有挑战性。基于这一事实,寡核苷酸定量的首选方法仍然是基于杂交的配体结合分析法。这些生物分析法通常具有高灵敏度,但选择性低且动态范围窄。它们还需要优化合适的“捕获和检测”探针,在药物发现先导优化的情况下,这可能会非常耗时且昂贵。在本文中,我们展示了一种针对大鼠血浆中一种模型硫代磷酸酯骨架寡脱氧核苷酸(ODN)药物(7692原子质量单位)的独特LC/MS/MS分析法。遇到了多个分析挑战。用于解决这些挑战的策略应该对追求质谱(MS)定量寡核苷酸的科学家有用。这些挑战包括分析物多重电荷化和阳离子加合(灵敏度降低)、干燥时分析物氧化以及高蛋白结合(回收率低)、ODN对暴露硅胶的亲和力(色谱重现性低和高残留)、分析物与容器的非特异性结合(储存稳定性低)以及合适内标的优化/合成(干扰和串扰)。一种缓冲液(7 mM三乙胺和3 mM甲酸铵)/甲醇,50:50(v/v),用作ESI-MS进样溶剂,并产生了尖锐的多电荷态分布。样品提取方法结合了酚/氯仿液 - 液萃取和固相萃取步骤,将绝对回收率提高到>70%。该方法在5 - 2000 ng/mL范围内得到验证,精密度(相对标准偏差百分比)<10.1%,准确度(相对误差百分比)<11.4%。

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