Department of Oncology, Lombardi Comprehensive Cancer Centre, Georgetown University Medical Center, E-415, New Research Building, 3900 Reservoir Road NW, Washington, DC 20057, USA.
Department of Biochemistry, Molecular and Cellular Biology, Georgetown University Medical Centre, Washington, DC 20057, USA.
Int J Mol Sci. 2024 May 28;25(11):5901. doi: 10.3390/ijms25115901.
Accurate and reliable quantification of organic acids with carboxylic acid functional groups in complex biological samples remains a major analytical challenge in clinical chemistry. Issues such as spontaneous decarboxylation during ionization, poor chromatographic resolution, and retention on a reverse-phase column hinder sensitivity, specificity, and reproducibility in multiple-reaction monitoring (MRM)-based LC-MS assays. We report a targeted metabolomics method using phenylenediamine derivatization for quantifying carboxylic acid-containing metabolites (CCMs). This method achieves accurate and sensitive quantification in various biological matrices, with recovery rates from 90% to 105% and CVs ≤ 10%. It shows linearity from 0.1 ng/mL to 10 µg/mL with linear regression coefficients of 0.99 and LODs as low as 0.01 ng/mL. The library included a wide variety of structurally variant CCMs such as amino acids/conjugates, short- to medium-chain organic acids, di/tri-carboxylic acids/conjugates, fatty acids, and some ring-containing CCMs. Comparing CCM profiles of pancreatic cancer cells to normal pancreatic cells identified potential biomarkers and their correlation with key metabolic pathways. This method enables sensitive, specific, and high-throughput quantification of CCMs from small samples, supporting a wide range of applications in basic, clinical, and translational research.
在临床化学中,准确可靠地定量分析具有羧酸官能团的复杂生物样本中的有机酸仍然是一个主要的分析挑战。在基于多反应监测 (MRM) 的 LC-MS 分析中,电离过程中自发脱羧、色谱分辨率差以及在反相柱上保留等问题会影响灵敏度、特异性和重现性。我们报告了一种使用苯二胺衍生化的靶向代谢组学方法,用于定量含羧酸的代谢物 (CCM)。该方法在各种生物基质中实现了准确灵敏的定量,回收率为 90%至 105%,CVs ≤ 10%。它在 0.1 ng/mL 至 10 µg/mL 的范围内呈现线性关系,线性回归系数为 0.99,LOD 低至 0.01 ng/mL。该文库包含了各种结构变异的 CCM,如氨基酸/缀合物、短链至中链有机酸、二羧酸/三羧酸/缀合物、脂肪酸和一些含环的 CCM。比较胰腺癌细胞和正常胰腺细胞的 CCM 图谱,确定了潜在的生物标志物及其与关键代谢途径的相关性。该方法能够从小样本中灵敏、特异、高通量地定量 CCM,支持在基础、临床和转化研究中广泛应用。