首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >MSAll strategy for comprehensive quantitative analysis of PEGylated-doxorubicin, PEG and doxorubicin by LC-high resolution q-q-TOF mass spectrometry coupled with all window acquisition of all fragment ion spectra
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MSAll strategy for comprehensive quantitative analysis of PEGylated-doxorubicin, PEG and doxorubicin by LC-high resolution q-q-TOF mass spectrometry coupled with all window acquisition of all fragment ion spectra

机译:通过LC高分辨率Q-Q-TOF质谱与所有窗口采集所有片段离子谱的MEG-高分辨率Q-Q-TOF质谱综合定量分析综合定量分析的MSALL策略。

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The covalent attachment of polyethylene glycol (PEG) to therapeutic compounds (known as PEGylation) is one of the most promising techniques to improve the biological efficacy of small molecular weight drugs. After administration, PEGylated prodrugs can be metabolized into pharmacologically active compounds so that PEGylated drug, free drug and released PEG are present simultaneously in the body. Understanding the pharmacokinetic behavior of these three compounds is needed to guide the development of pegylated theranostic agents. However, PEGs are polydisperse molecules with a wide range of molecular weights, so that the simultaneous quantitation of PEGs and PEGylated molecules in biological matrices is very challenging. This article reports the application of a data-independent acquisition method (MSAll) based on liquid chromatography electrospray ionization quadrupole time-of-flight mass spectrometry (LC-q-q-TOF-MS) in the positive ion mode to the simultaneous determination of methoxyPEG2000-doxorubicin (mPEG2K-Dox) and its breakdown products in rat blood. Using the MSAll technique, precursor ions of all molecules are generated in q1, fragmented to product ions in q2 (collision cell), and subjected to TOF separation before precursor and product ions are recorded using low and high collision energies (CE) respectively in different experiments for a single sample injection. In this study, dissociation in q2 generated a series of high resolution PEG-related product ions at m/z 89.0611, 133.0869, 177.1102, 221.1366, 265.1622, 309.1878, and 353.2108 corresponding to fragments containing various numbers of ethylene oxide subunits, Dox-related product ions at m/z 321.0838 and 361.0785, and an mPEG2K-Dox specific product ion at m/z 365.0735. Detection of mPEGs and mPEG2K-Dox was based on high resolution extracted ions of mPEG and the specific compound. The method was successfully applied to a pharmacokinetic study of doxorubicin, mPEG2K (methylated polyethylene glycol 2K), and mPEG2K-doxorubicin in rats after a single intravenous injection of mPEG2K-doxorubicin. To the best of our knowledge, this is the first assay that simultaneously determines mPEG, Dox, and mPEG2K-Dox in a biological matrix. We believe the MSAll technique as applied in this study can be potentially extended to the determination of other PEGylated small molecules or polymeric compounds.
机译:聚乙二醇(PEG),以治疗性化合物(称为聚乙二醇化)的共价连接是最有前途的技术,以提高小分子量药物的生物功效之一。给药后,聚乙二醇化的前体药物可以使得PEG化药物,游离药物和释放PEG同时存在在体内代谢成药理学活性化合物。了解这三个化合物的药物代谢动力学行为需要引导聚乙二醇化治疗诊断试剂的发展。然而,PEG是多分散的分子具有宽范围的分子量,从而使的PEG和PEG化分子的生物基质中同时定量非常具有挑战性。本文根据液相色谱法在正离子模式电喷雾电离四极时间飞行质谱(LC-QQ-TOF-MS),以methoxyPEG2000-同时测定报告一个与数据无关的获取方法(MSAll)的应用多柔比星(mPEG2K-DOX)及其分解产物在大鼠血液。使用MSAll技术,在Q1中产生的所有分子的前体离子,片段化以产物离子在Q2(碰撞室),和之前的前体和产物离子进行TOF分离分别使用低和高碰撞能(CE)在不同的记录实验对单个样品注射。在这项研究中,产生的离解在Q2对应于含有环氧乙烷的亚单位的各种数目的片段一系列在m / z 89.0611,133.0869,177.1102,221.1366,265.1622,309.1878,高分辨率PEG-产品相关的离子的和353.2108霉素相关的产物离子在m / z 321.0838和361.0785,和在m / z 365.0735一个mPEG2K-DOX特定产物离子。的mPEG和mPEG2K-DOX的检测是基于MPEG的高分辨率提取的离子和特定化合物。该方法mPEG2K阿霉素的单次静脉内注射后成功地应用于多柔比星,mPEG2K(甲基化聚乙二醇2K),并且mPEG2K阿霉素在大鼠中的药代动力学研究。据我们所知,这是同时确定MPEG,阿霉素,和mPEG2K-DOX在生物基质的第一个分析。我们相信在本研究中应用的MSAll技术可以潜在地扩展到其它聚乙二醇化的小分子或聚合化合物的测定。

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