Department of Nutritional Sciences, College of Natural Sciences, The University of Texas at Austin, Austin, Texas 78712, United States.
Dell Pediatric Research Institute, Dell Medical School, The University of Texas at Austin, Austin, Texas 78712, United States.
Anal Chem. 2021 Apr 13;93(14):5805-5814. doi: 10.1021/acs.analchem.0c05325. Epub 2021 Apr 5.
Stereospecific recognition of metabolites plays a significant role in the detection of potential disease biomarkers thereby providing new insights in diagnosis and prognosis. D-Hdroxy/amino acids are recognized as potential biomarkers in several metabolic disorders. Despite continuous advances in metabolomics technologies, the simultaneous measurement of different classes of enantiomeric metabolites in a single analytical run remains challenging. Here, we develop a novel strategy for untargeted chiral metabolomics of hydroxy/amine groups (-OH/-NH) containing metabolites, including all hydroxy acids (HAs) and amino acids (AAs), by chiral derivatization coupled with liquid chromatography-high resolution tandem mass spectrometry (LC-HR-MS/MS). Diacetyl-tartaric anhydride (DATAN) was used for the simultaneous derivatization of-OH/-NH containing metabolites as well as the resulting diastereomers, and all the derivatized metabolites were resolved in a single analytical run. Data independent MS/MS acquisition (DIA) was applied to positively identify DATAN-labeled metabolites based on reagent specific diagnostic fragment ions. We discriminated chiral from achiral metabolites based on the reversal of elution order of D and L isomers derivatized with the enantiomeric pair (±) of DATAN in an untargeted manner. Using the developed strategy, a library of 301 standards that consisted of 214 chiral and 87 achiral metabolites were separated and detected in a single analytical run. This approach was then applied to investigate the enantioselective metabolic profile of the bone marrow (BM) and peripheral blood (PB) plasma samples from patients with acute myeloid leukemia (AML) at diagnosis and following completion of the induction phase of chemotherapeutic treatment. The sensitivity and selectivity of the developed method enabled the detection of trace levels of the D-enantiomer of HAs and AAs in primary plasma patient samples. Several of these metabolites were significantly altered in response to chemotherapy. The developed LC-HR-MS method entails a valuable step forward in chiral metabolomics.
对代谢物的立体选择性识别在检测潜在疾病生物标志物方面发挥着重要作用,从而为诊断和预后提供了新的见解。D-羟基/氨基酸被认为是几种代谢紊乱的潜在生物标志物。尽管代谢组学技术不断进步,但在单个分析运行中同时测量不同类别的对映异构体代谢物仍然具有挑战性。在这里,我们开发了一种新的策略,用于通过手性衍生化结合液相色谱-高分辨串联质谱(LC-HR-MS/MS)对包含羟基/氨基(-OH/-NH)的代谢物(包括所有羟基酸(HAs)和氨基酸(AAs))进行非靶向手性代谢组学分析。二乙酰酒石酸酐(DATAN)用于同时衍生化含-OH/-NH 的代谢物以及所得的非对映异构体,并且所有衍生化的代谢物都在单个分析运行中得到分离。基于试剂特异性诊断片段离子,应用数据非依赖性 MS/MS 采集(DIA)正向鉴定 DATAN 标记的代谢物。我们基于对映体(±)DATAN 衍生的 D 和 L 异构体的洗脱顺序反转,以非靶向方式区分手性和非手性代谢物。使用开发的策略,在单个分析运行中分离和检测了由 214 个手性和 87 个非手性代谢物组成的 301 个标准品库。然后,该方法应用于研究初诊时急性髓细胞白血病(AML)患者骨髓(BM)和外周血(PB)血浆样本以及完成化疗诱导阶段后的手性代谢特征。开发方法的灵敏度和选择性能够检测到原始血浆患者样本中痕量的 HA 和 AA 的 D-对映体。这些代谢物中的几种在化疗后发生了明显变化。所开发的 LC-HR-MS 方法在手性代谢组学中向前迈进了有价值的一步。