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一种可扩展的一体式注射双衍生化 LC-MS/MS 策略,用于基于多化学基团的亚代谢组的绝对定量分析。

An extendable all-in-one injection twin derivatization LC-MS/MS strategy for the absolute quantification of multiple chemical-group-based submetabolomes.

机构信息

Key Laboratory of Drug Quality Control and Pharmacovigilance (Ministry of Education), State Key Laboratory of Natural Medicine, China Pharmaceutical University, Nanjing, 210009, PR China.

Key Laboratory of Drug Quality Control and Pharmacovigilance (Ministry of Education), State Key Laboratory of Natural Medicine, China Pharmaceutical University, Nanjing, 210009, PR China; Department of Organic Chemistry, China Pharmaceutical University, Nanjing, 210009, China.

出版信息

Anal Chim Acta. 2019 Jul 31;1063:99-109. doi: 10.1016/j.aca.2019.02.001. Epub 2019 Feb 7.

Abstract

The ability of LC-MS/MS for high coverage metabolite analysis lags behind the requirements of global metabolomics. The introduction of chemical derivatizations could significantly extend the ability of LC-MS/MS with enhanced MS response and improved LC separation, which has been serving as a promising quantitative tool for metabolomic analysis. However, as one specific derivatization reagent usually targets to a certain moiety, only a single chemical-group-based submetabolome could be analyzed in one injection. Therefore, the coverage of detected metabolites by derivatization-based LC-MS/MS is largely limited. To overcome this technical obstacle of derivatization-based LC-MS and increase submetabolome coverage, we proposed an extendable all-in-one injection LC-MS/MS strategy. 5-dimethylamino-naphthalene-1-sulfonyl chloride (Dns-Cl)/5-diethylamino-naphthalene-1-sulfonyl chloride (Dens-Cl) and 5-dimethylamino-naphthalene-1-sulfonyl piperazine (Dns-PP)/5-diethylamino-naphthalene-1-sulfonyl piperazine (Dens-PP) were used as twins labeling reagents for amino/phenol and carboxyl submetabolomes, respectively. "Series Mode" and "Parallel Mode" were proposed and investigated using eight representative standards with the consideration of interaction between different derivatization systems, time-consumption, and extendability. As a result, we found that "Series Mode" led to yield reduction, while "Parallel Mode" gave identical results with those of individual derivatization. Finally, a "Parallel Mode" was chosen to develop an extendable all-in-one injection twin derivatization LC-MS/MS strategy to quantify eighty metabolites assigned to five classes of microbial metabolites, including polyamines, amino acids, indole derivatives, bile acids, and free fatty acids. This well-validated method quantified 67 metabolites absolutely and discovered additional 40 differential metabolites compared with the untargeted method in rat serum from irinotecan (CPT-11)-induced gastrointestinal toxicity model.

摘要

LC-MS/MS 进行高覆盖率代谢物分析的能力落后于全球代谢组学的要求。化学衍生化的引入可以显著扩展 LC-MS/MS 的能力,增强 MS 响应和改善 LC 分离,这已成为代谢组学分析的一种有前途的定量工具。然而,由于一种特定的衍生化试剂通常针对特定的部分,因此在一次注射中只能分析单个化学基团的亚代谢组。因此,衍生化 LC-MS/MS 检测到的代谢物的覆盖率在很大程度上受到限制。为了克服衍生化 LC-MS 存在的技术障碍并增加亚代谢组的覆盖率,我们提出了一种可扩展的一体化进样 LC-MS/MS 策略。5-二甲氨基萘-1-磺酰氯 (Dns-Cl)/5-二乙氨基萘-1-磺酰氯 (Dens-Cl) 和 5-二甲氨基萘-1-磺酰哌嗪 (Dns-PP)/5-二乙氨基萘-1-磺酰哌嗪 (Dens-PP) 分别用作氨基酸/酚和羧基亚代谢组的双胞胎标记试剂。考虑到不同衍生化系统之间的相互作用、耗时和可扩展性,提出并研究了“串联模式”和“并行模式”。结果发现,“串联模式”导致产率降低,而“并行模式”则产生与单独衍生化相同的结果。最后,选择“并行模式”来开发一种可扩展的一体化进样双衍生化 LC-MS/MS 策略,以定量分配给五类微生物代谢物的 80 种代谢物,包括多胺、氨基酸、吲哚衍生物、胆汁酸和游离脂肪酸。该方法经过充分验证,可绝对定量 67 种代谢物,并与伊立替康(CPT-11)诱导的胃肠道毒性模型大鼠血清中的非靶向方法相比,发现了另外 40 种差异代谢物。

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