| Literature DB >> 29707597 |
Anqi Zhang1, Keshab Rijal2, Seng Kah Ng3, Katya Ravid3, Vipul Chitalia2,3.
Abstract
In addition to various physiologic roles, emerging evidence strongly points to pathogenic roles of tryptophan and of its metabolites, especially in diseases such as renal failure. Accurate estimation of levels of these metabolites in blood is important to mechanistically probe their contribution to disease pathogenesis, while clinically, such a panel can be used to risk stratify patients for a clinical phenotype. Herein, we describe a comprehensive liquid chromatography-mass spectrometry (LC/MS)-based method to determine the level of tryptophan and its metabolites (kynurenine, kynurenic acid, xanthurenic acid, anthranilic acid, indoxyl sulfate and indoxyl acetate). Human sera samples were processed through a C18 column followed by application of a binary gradient and quantitation by MS/MS. The linearity, lower limit of detection, inter- and intraassay variabilities and recovery were determined, yielding a precise, reproducible method for all the metabolites. Unlike previous studies, we further validated these methods in a well-characterized set of human sera from end stage renal disease patients compared to age-, gender- and ethnic-background matched human controls. Overall, we report an optimized LC/MS-based estimation of a comprehensive panel of tryptophan-derived metabolites with quality features within FDA standards, underscoring their readiness for translational use.Entities:
Keywords: indoxyl sulfate; kynurenine; mass spectrometry; uremic solutes
Year: 2017 PMID: 29707597 PMCID: PMC5914531 DOI: 10.14440/jbm.2017.182
Source DB: PubMed Journal: J Biol Methods ISSN: 2326-9901
Detection and quantification of the metabolites by mass spectrometry.
| Metabolites | Mode | MW | Q1 | Q3 | CE | Internal standard |
|---|---|---|---|---|---|---|
| Tryptophan | + | 204.2 | 205.2 | 146.0 | 25 | Tryptophan-d8 |
| Kynurenine | + | 208.2 | 209.3 | 146.0 | 26 | Kynurine-d6 |
| Kynurenic acid | + | 189.2 | 190.2 | 144.0 | 30 | Kynurenic acid-d5 |
| Xanthurenic acid | + | 205.2 | 206.0 | 132.0 | 42 | Xanthurenicacid-d4 |
| Indoxyl sulfate | − | 213.2 | 212.0 | 80.1 | −35 | Indoxyl sulfate-d4 |
| Indoxyl acetate | − | 175.2 | 174.0 | 130.0 | −15 | Indoxyl sulfate-d4 |
| Anthranilic acid | − | 137.2 | 136.0 | 91.8 | −32 | Anthranilic acid-N15 |
CE: collision energy; MW: molecular weight (Kda); Q (M/Z): mass/charge ions. +: positive separation; -: negative separation
Linearity of detection.
| µM | Tryptophan | Kynurenic acid | Kynurenine | Xanthurenic acid | Anthranilic acid | Indoxyl sulfate | Indoxyl acetate |
|---|---|---|---|---|---|---|---|
| Linearity range | 0.1–500 | 0.002–20 | 0.04–40 | 0.001–10 | 0.01–10 | 0.1–500 | 0.01–10 |
| 0.9989 | 0.9991 | 0.9998 | 0.9995 | 0.9993 | 0.9991 | 0.9973 |
R2 = correlation coefficient.
Lowest quantitation limit of tryptophan metabolites by LC-MS method.
| Quantitation limit (µM) | Tryptophan | Kynurenic acid | Kynurenine | Xanthurenic acid | Anthranilic acid | Indoxyl sulfate | Indoxyl acetate |
|---|---|---|---|---|---|---|---|
| 0.010 | 0.001 | 0.016 | 0.005 | 0.013 | 0.100 | 0.005 |
Inter assay and intra-assay variability of estimation of uremic solutes.
| Tryptophan | Kynurenic acid | Kynurenine | Xanthurenic acid | Anthranilic acid | Indoxyl sulfate | Indoxyl acetate | |
|---|---|---|---|---|---|---|---|
| Intra-assay variation | |||||||
| QC1 | |||||||
| Average (µM) | 7.471 | 0.037 | 0.687 | 0.146 | 0.033 | 16.003 | 0.127 |
| SD | 0.197 | 0.001 | 0.086 | 0.004 | 0.003 | 0.377 | 0.012 |
| CV (%) | 2.633 | 2.524 | 12.511 | 2.644 | 9.143 | 2.357 | 9.750 |
| QC2 | |||||||
| Average (µM) | 22.968 | 0.096 | 1.510 | 0.436 | 0.074 | 46.044 | 0.441 |
| SD | 0.962 | 0.004 | 0.154 | 0.012 | 0.005 | 1.838 | 0.034 |
| CV (%) | 4.189 | 4.007 | 10.209 | 2.741 | 6.137 | 3.991 | 7.800 |
| Inter-assay variation | |||||||
| QC1 | |||||||
| Average | 7.951 | 0.034 | 0.763 | 0.150 | 0.032 | 16.065 | 0.136 |
| SD | 0.740 | 0.003 | 0.067 | 0.003 | 0.004 | 0.065 | 0.013 |
| CV (%) | 9.309 | 7.796 | 8.819 | 2.019 | 13.548 | 0.403 | 9.446 |
| QC2 | |||||||
| Average | 23.870 | 0.097 | 1.573 | 0.447 | 0.066 | 44.578 | 0.421 |
| SD | 1.563 | 0.001 | 0.128 | 0.017 | 0.008 | 2.606 | 0.058 |
| CV (%) | 6.550 | 0.978 | 8.121 | 3.905 | 11.938 | 5.847 | 13.681 |
Recovery of uremic solutes.
| Tryptophan | Kynurenic acid | Kynurenine | Xanthurenic acid | Anthranilic acid | Indoxyl sulfate | Indoxyl acetate | |
|---|---|---|---|---|---|---|---|
| Add (µmol) | 16.670 | 0.067 | 1.333 | 0.333 | 0.033 | 33.300 | 0.333 |
| Recovery (%) | 112.440 | 111.672 | 93.060 | 96.696 | 99.568 | 108.724 | 90.296 |
| SD | 6.674 | 7.269 | 4.603 | 2.598 | 3.330 | 3.395 | 8.008 |
| CV (%) | 5.936 | 6.509 | 4.946 | 2.687 | 3.344 | 3.122 | 8.869 |
| Add (µmol) | 5.000 | 0.020 | 0.400 | 0.100 | 0.010 | 10.000 | 0.100 |
| Recovery (%) | 108.1 | 107.396 | 82.457 | 96.042 | 105.615 | 115.321 | 90.000 |
| CV (%) | 5.105 | 7.870 | 8.028 | 2.835 | 4.481 | 2.691 | 5.214 |