Comprehensive GC-MS Measurement of Amino Acids, Metabolites, and Malondialdehyde in Metformin-Associated Lactic Acidosis at Admission and during Renal Replacement Treatment
Abstract
1. Introduction
2. Materials and Methods
2.1. Patient
2.2. GC-MS Analyses in Plasma, Urine, and Dialysate Samples
2.3. Calculations and Statistical Analyses
3. Results and Discussion
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Davies, M.J.; Aroda, V.R.; Collins, B.S.; Gabbay, R.A.; Green, J.; Maruthur, N.M.; Rosas, S.E.; Del Prato, S.; Mathieu, C.; Mingrone, G.; et al. Management of Hyperglycemia in Type 2 Diabetes, 2022. A Consensus Report by the American Diabetes Association (ADA) and the European Association for the Study of Diabetes (EASD). Diabetes Care 2022, 45, 2753–2786. [Google Scholar] [CrossRef] [PubMed]
- Graham, G.G.; Punt, J.; Arora, M.; Day, R.O.; Doogue, M.P.; Duong, J.K.; Furlong, T.J.; Greenfield, J.R.; Greenup, L.C.; Kirkpatrick, C.M.; et al. Clinical pharmacokinetics of metformin. Clin. Pharmacokinet. 2011, 50, 81–98. [Google Scholar] [CrossRef] [PubMed]
- Lalau, J.D.; Kajbaf, F.; Protti, A.; Christensen, M.M.; De Broe, M.E.; Wiernsperger, N. Metformin-associated lactic acidosis (MALA): Moving towards a new paradigm. Diabetes Obes. Metab. 2017, 19, 1502–1512. [Google Scholar] [CrossRef] [PubMed]
- Protti, A.; Russo, R.; Tagliabue, P.; Vecchio, S.; Singer, M.; Rudiger, A.; Foti, G.; Rossi, A.; Mistraletti, G.; Gattinoni, L. Oxygen consumption is depressed in patients with lactic acidosis due to biguanide intoxication. Crit. Care 2010, 14, R22. [Google Scholar] [CrossRef] [PubMed]
- Takiyama, Y.; Harumi, T.; Watanabe, J.; Fujita, Y.; Honjo, J.; Shimizu, N.; Makino, Y.; Haneda, M. Tubular injury in a rat model of type 2 diabetes is prevented by metformin: A possible role of HIF-1α expression and oxygen metabolism. Diabetes 2011, 60, 981–992. [Google Scholar] [CrossRef] [PubMed]
- Neal, A.; Rountree, A.M.; Philips, C.W.; Kavanagh, T.J.; Williams, D.P.; Newham, P.; Khalil, G.; Cook, D.L.; Sweet, I.R. Quantification of Low-Level Drug Effects Using Real-Time, in vitro Measurement of Oxygen Consumption Rate. Toxicol. Sci. 2015, 148, 594–602. [Google Scholar] [CrossRef] [PubMed]
- Andreis, D.T.; Mallat, J.; Tettamanti, M.; Chiarla, C.; Giovannini, I.; Gatti, S.; Protti, A. Increased ratio of P[v-a]CO2 to C[a-v]O2 without global hypoxia: The case of metformin-induced lactic acidosis. Respir. Physiol. Neurobiol. 2021, 285, 103586. [Google Scholar] [CrossRef] [PubMed]
- Calello, D.P.; Liu, K.D.; Wiegand, T.J.; Roberts, D.M.; Lavergne, V.; Gosselin, S.; Hoffman, R.S.; Nolin, T.D.; Ghannoum, M. Extracorporeal Treatment for Metformin Poisoning: Systematic Review and Recommendations From the Extracorporeal Treatments in Poisoning Workgroup. Crit. Care Med. 2015, 43, 1716–1730. [Google Scholar] [CrossRef]
- Preiss, D.; Rankin, N.; Welsh, P.; Holman, R.R.; Kangas, A.J.; Soininen, P.; Würtz, P.; Ala-Korpela, M.; Sattar, N. Effect of metformin therapy on circulating amino acids in a randomized trial: The CAMERA study. Diabet. Med. 2016, 33, 1569–1574. [Google Scholar] [CrossRef]
- Tsikas, D. Homoarginine in health and disease. Curr. Opin. Clin. Nutr. Metab. Care 2023, 26, 42–49. [Google Scholar] [CrossRef]
- Wu, G. Important roles of dietary taurine, creatine, carnosine, anserine and 4-hydroxyproline in human nutrition and health. Amino Acids 2020, 52, 329–360. [Google Scholar] [CrossRef] [PubMed]
- Wu, Z.; Hou, Y.; Dai, Z.; Hu, C.A.; Wu, G. Metabolism, Nutrition, and Redox Signaling of Hydroxyproline. Antioxid. Redox Signal 2019, 30, 674–682. [Google Scholar] [CrossRef] [PubMed]
- Baskal, S.; Posma, R.A.; Bollenbach, A.; Dieperink, W.; Bakker, S.J.L.; Nijsten, M.W.; Touw, D.J.; Tsikas, D. GC-MS analysis of 4-hydroxyproline: Elevated proline hydroxylation in metformin- associated lactic acidosis and metformin-treated Becker muscular dystrophy patients. Amino Acids 2024, 56, 21. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D. A critical review and discussion of analytical methods in the L-arginine/nitric oxide area of basic and clinical research. Anal. Biochem. 2008, 379, 139–163. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D. Urinary Dimethylamine (DMA) and Its Precursor Asymmetric Dimethylarginine (ADMA) in Clinical Medicine, in the Context of Nitric Oxide (NO) and Beyond. J. Clin. Med. 2020, 9, 1843. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D. Assessment of lipid peroxidation by measuring malondialdehyde (MDA) and relatives in biological samples: Analytical and biological challenges. Anal. Biochem. 2017, 524, 13–30. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D. Simultaneous Derivatization and Quantification of the Nitric Oxide Metabolites Nitrite and Nitrate in Biological Fluids by Gas Chromatography/Mass Spectrometry. Anal. Chem. 2000, 72, 4064–4072. [Google Scholar] [CrossRef] [PubMed]
- Hanff, E.; Lützow, M.; Kayacelebi, A.A.; Finkel, A.; Maassen, M.; Yanchev, G.R.; Haghikia, A.; Bavendiek, U.; Buck, A.; Lücke, T.; et al. Simultaneous GC-ECNICI-MS Measurement of Nitrite, Nitrate and Creatinine in Human Urine and Plasma in Clinical Settings. J. Chromatogr. B Anal. Technol. Biomed. Life Sci. 2017, 1047, 207–214. [Google Scholar] [CrossRef] [PubMed]
- Hanff, E.; Ruben, S.; Kreuzer, M.; Bollenbach, A.; Kayacelebi, A.A.; Das, A.M.; von Versen-Höynck, F.; von Kaisenberg, C.; Haffner, D.; Ückert, S.; et al. Development and Validation of GC–MS Methods for the Comprehensive Analysis of Amino Acids in Plasma and Urine and Applications to the HELLP Syndrome and Pediatric Kidney Transplantation: Evidence of Altered Methylation, Transamidination, and Arginase Activity. Amino Acids 2019, 51, 529–547. [Google Scholar] [PubMed]
- Baskal, S.; Bollenbach, A.; Mels, C.; Kruger, R.; Tsikas, D. Development, validation of a GC-MS method for the simultaneous measurement of amino acids, their PTM metabolites and AGEs in human urine, and application to the bi-ethnic ASOS study with special emphasis to lysine. Amino Acids 2022, 54, 615–641. [Google Scholar] [CrossRef]
- Baskal, S.; Bollenbach, A.; Henzi, B.; Hafner, P.; Fischer, D.; Tsikas, D. Stable-Isotope Dilution GC-MS Measurement of Metformin in Human Serum and Urine after Derivatization with Pentafluoropropionic Anhydride and Its Application in Becker Muscular Dystrophy Patients Administered with Metformin, L-Citrulline, or Their Combination. Molecules 2022, 27, 3850. [Google Scholar] [CrossRef] [PubMed]
- Kayacelebi, A.A.; Beckmann, B.; Gutzki, F.M.; Jordan, J.; Tsikas, D. GC-MS and GC-MS/MS measurement of the cardiovascular risk factor homoarginine in biological samples. Amino Acids 2014, 46, 2205–2217. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D.; Thum, T.; Becker, T.; Pham, V.V.; Chobanyan, K.; Mitschke, A.; Beckmann, B.; Gutzki, F.M.; Bauersachs, J.; Stichtenoth, D.O. Accurate quantification of dimethylamine (DMA) in human urine by gas chromatography-mass spectrometry as pentafluorobenzamide derivative: Evaluation of the relationship between DMA and its precursor asymmetric dimethylarginine (ADMA) in health and disease. J. Chromatogr. B Anal. Technol. Biomed. Life Sci. 2007, 851, 229–239. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D.; Wolf, A.; Mitschke, A.; Gutzki, F.M.; Will, W.; Bader, M. GC-MS determination of creatinine in human biological fluids as pentafluorobenzyl derivative in clinical studies and biomonitoring: Inter-laboratory comparison in urine with Jaffé, HPLC and enzymatic assays. J. Chromatogr. B Anal. Technol. Biomed. Life Sci. 2010, 878, 2582–2592. [Google Scholar] [CrossRef] [PubMed]
- Kajbaf, F.; De Broe, M.E.; Lalau, J.D. Therapeutic Concentrations of Metformin: A Systematic Review. Clin. Pharmacokinet. 2016, 55, 439–459. [Google Scholar] [CrossRef] [PubMed]
- Nichol, A.; Bailey, M.; Egi, M.; Pettila, V.; French, C.; Stachowski, E.; Reade, M.C.; Cooper, D.J.; Bellomo, R. Dynamic lactate indices as predictors of outcome in critically ill patients. Crit. Care 2011, 15, R242. [Google Scholar] [CrossRef] [PubMed]
- Löwer, R.; Lange, H.W.; Hempel, K. Diagnostic meaning of the urinary output of Nepsilon-methylated lysines. Investigation of healthy individuals and patients with malignant diseases, myopathies or renal failure. Clin. Chim. Acta 1975, 58, 155–164. [Google Scholar] [CrossRef] [PubMed]
- Nijveldt, R.J.; Van Leeuwen, P.A.; Van Guldener, C.; Stehouwer, C.D.; Rauwerda, J.A.; Teerlink, T. Net renal extraction of asymmetrical (ADMA) and symmetrical (SDMA) dimethylarginine in fasting humans. Nephrol. Dial. Transplant. 2002, 17, 1999–2002. [Google Scholar] [CrossRef] [PubMed]
- Bjørnestad, E.Ø.; Dhar, I.; Svingen, G.F.T.; Pedersen, E.R.; Svenningsson, M.M.; Tell, G.S.; Ueland, P.M.; Ørn, S.; Sulo, G.; Laaksonen, R.; et al. Trimethyllysine predicts all-cause and cardiovascular mortality in community-dwelling adults and patients with coronary heart disease. Eur. Heart J. Open 2021, 1, oeab007. [Google Scholar] [CrossRef]
- Schwedhelm, E.; Xanthakis, V.; Maas, R.; Sullivan, L.M.; Schulze, F.; Riederer, U.; Benndorf, R.A.; Böger, R.H.; Vasan, R.S. Asymmetric dimethylarginine reference intervals determined with liquid chromatography-tandem mass spectrometry: Results from the Framingham offspring cohort. Clin. Chem. 2009, 55, 1539–1545. [Google Scholar] [CrossRef]
- Schwedhelm, E.; Xanthakis, V.; Maas, R.; Sullivan, L.M.; Atzler, D.; Lüneburg, N.; Glazer, N.L.; Riederer, U.; Vasan, R.S.; Böger, R.H. Plasma symmetric dimethylarginine reference limits from the Framingham offspring cohort. Clin. Chem. Lab. Med. 2011, 49, 1907–1910. [Google Scholar] [CrossRef]
- Atzler, D.; Appelbaum, S.; Cordts, K.; Ojeda, F.M.; Wild, P.S.; Münzel, T.; Blankenberg, S.; Böger, R.H.; Blettner, M.; Beutel, M.E.; et al. Reference intervals of plasma homoarginine from the German Gutenberg Health Study. Clin. Chem. Lab. Med. 2016, 54, 1231–1237. [Google Scholar] [CrossRef] [PubMed]
- Yamamoto, H.; Kondo, K.; Tanaka, T.; Muramatsu, T.; Yoshida, H.; Imaizumi, A.; Nagao, K.; Noguchi, Y.; Miyano, H. Reference intervals for plasma-free amino acid in a Japanese population. Ann. Clin. Biochem. 2016, 53 Pt 3, 357–364. [Google Scholar] [CrossRef] [PubMed]
- Tsikas, D.; Maassen, N.; Thorns, A.; Finkel, A.; Lützow, M.; Röhrig, M.A.; Blau, L.S.; Dimina, L.; Mariotti, F.; Beckmann, B.; et al. Short-Term Supplementation of Sodium Nitrate vs. Sodium Chloride Increases Homoarginine Synthesis in Young Men Independent of Exercise. Int. J. Mol. Sci. 2022, 23, 10649. [Google Scholar] [CrossRef] [PubMed]
- Kowalof, E.M.; Phang, J.M.; Granger, A.S.; Downing, S.J. Regulation of proline oxidase activity by lactate. Proc. Natl. Acad. Sci. USA 1977, 74, 5368–5371. [Google Scholar] [CrossRef]
- Lewis, S.L.; Bucher, L.; Heitkemper, M.M.; Harding, M.M.; Kwong, J.; Roberts, D. Medical-Surgical Nursing: Assessment and Management of Clinical Problems, 10th ed.; Elsevier Health Sciences: St. Louis, MO, USA, 2016; p. 1025. ISBN 978-0-323-37143-8. [Google Scholar]
- Zhloba, A.A.; Subbotina, T.F. Homoarginine test for evaluation of metabolic renal dysfunction. Klin. Lab. Diagn. 2021, 66, 709–717. [Google Scholar] [CrossRef]
(a) | |||||||||
Time | Metformin | Creatinine | Nitrate | Nitrite | MDA | GAA | ADMA | SDMA | |
5.5 | 75 | 388 | 57 | 2.64 | 1.16 | 1.42 | 0.22 | 1.48 | |
7.2 | 73 | 385 | 59 | 3.09 | 0.90 | 3.46 | 0.53 | 1.76 | |
9.0 | 63 | 350 | 56 | 3.07 | 1.25 | 3.63 | 0.48 | 1.98 | |
10.7 | 55 | 297 | 55 | 2.83 | 0.93 | 5.30 | 0.71 | 2.38 | |
11.3 | 50 | 307 | 58 | 3.24 | 0.89 | 5.31 | 0.50 | 1.88 | |
12.6 | 44 | 267 | 51 | 3.34 | 0.83 | 4.09 | 0.53 | 1.30 | |
15.9 | 35 | 202 | 53 | 3.25 | 0.07 | 2.83 | 0.32 | 0.98 | |
30.8 | 19 | 183 | 57 | 4.38 | 1.18 | 5.85 | 0.48 | 1.42 | |
35.0 | 16 | 167 | 53 | 3.66 | 0.96 | 4.72 | 0.44 | 1.73 | |
40.3 | 13 | 145 | 51 | 2.96 | 1.14 | 1.93 | 0.30 | 1.03 | |
48.8 | 10 | 135 | 58 | 3.12 | 0.81 | 4.74 | 0.48 | 1.03 | |
53.3 | 10 | 190 | 53 | 2.92 | 1.03 | 2.82 | 0.35 | 2.25 | |
57.0 | 9 | 219 | 57 | 3.08 | 1.23 | 2.62 | 0.46 | 1.34 | |
62.0 | 7 | 250 | 53 | 3.29 | 0.94 | 1.96 | 0.50 | 1.18 | |
63.0 | 7 | 226 | 56 | 3.02 | 0.90 | 1.91 | 0.51 | 1.34 | |
64.7 | 6 | 234 | 56 | 3.29 | 0.92 | 3.35 | 0.33 | 2.15 | |
66.6 | 4 | 230 | 60 | 3.08 | 0.82 | 2.28 | 0.42 | 1.52 | |
(b) | |||||||||
Time | Metformin | Creatinine | DMA | Nitrate | Nitrite | MDA | GAA | ADMA | SDMA |
5.5 | 1.46 | 2.5 | 126 | 239 | 10.5 | 1.08 | 13.2 | 1.32 | 12.9 |
7.2 | 1.17 | 1.88 | 84 | 137 | 10.3 | 0.98 | 12.2 | 1.8 | 4.3 |
9.0 | 1.44 | 2.23 | 124 | 107 | 9.3 | 1.79 | 13.6 | 2.14 | 7.2 |
10.7 | 1.23 | 2.11 | 102 | 119 | 7.4 | 1.09 | 11.0 | 1.07 | 5.0 |
11.3 | 1.25 | 2.19 | 105 | 91 | 5.1 | 1.08 | 11.8 | 1.23 | 4.8 |
12.6 | 2.58 | 4.84 | 213 | 112 | 9.8 | 15.07 | 39.1 | 2.68 | 11.8 |
15.9 | 3.37 | 6.14 | 279 | 81 | 5.1 | 19.52 | 59.6 | 4.39 | 17.8 |
30.8 | 3.5 | 4.88 | 321 | 216 | 24.1 | 7.31 | 146.1 | 7.65 | 33.7 |
35.0 | 2.87 | 4.49 | 231 | 84 | 10.6 | 9.66 | 147.8 | 4.93 | 14.8 |
40.3 | 4.02 | 6.29 | 367 | 78 | 7.5 | 6.64 | 196.4 | 6.71 | 15.1 |
46.5 | 5.11 | 6.39 | 423 | 83 | 5.4 | 6.88 | 212.8 | 8.45 | 15.6 |
48.8 | 3.28 | 5.43 | 360 | 84 | 1.9 | 5.28 | 248.2 | 5.78 | 13.3 |
50.8 | 2.04 | 3.33 | 230 | 86 | 1.8 | 3.53 | 198.4 | 4.15 | 6.1 |
53.3 | 1.17 | 2.56 | 191 | 93 | 2.0 | 10.81 | 179.7 | 3.42 | 5.4 |
57.0 | 0.95 | 2.61 | 148 | 108 | 2.2 | 4.22 | 97.5 | 3.17 | 5.7 |
62.0 | 0.68 | 3.17 | 153 | 127 | 2.1 | 1.81 | 79.7 | 3 | 5.1 |
63.0 | 0.64 | 3.6 | 157 | 137 | 3.3 | 1.85 | 81.1 | 2.79 | 5.7 |
64.7 | 0.6 | 3.85 | 162 | 141 | 3.1 | 1.7 | 59.8 | 3.15 | 6.0 |
66.6 | 0.5 | 4.04 | 233 | 150 | 2.3 | 2.07 | 59.4 | 3.85 | 7.8 |
(c) | |||||||||
Time | Metformin | DMA | Nitrate | Nitrite | MDA | Creatinine | GAA | ADMA | SDMA |
5.0 | 28.6 | 3.41 | 31.1 | 9.49 | 0.19 | 155 | 1.67 | 0.16 | 0.54 |
8.8 | 80.9 | 10.5 | 32.2 | 2.70 | 0.27 | 344 | 2.00 | 0.40 | 1.52 |
11.0 | 69.6 | 9.09 | 25.9 | 4.48 | 0.25 | 427 | 2.49 | 0.32 | 1.22 |
12.0 | 60.7 | 7.73 | 29.0 | 4.13 | 0.29 | 384 | 2.94 | 0.31 | 1.39 |
13.0 | 54.9 | 7.80 | 24.3 | 4.12 | 0.27 | 423 | 3.97 | 0.32 | 1.31 |
15.3 | 45.2 | 7.92 | 27.5 | 3.89 | 0.23 | 415 | 3.04 | 0.31 | 1.36 |
17.6 | 37.1 | 6.86 | 25.3 | 3.92 | 0.26 | 344 | 2.38 | 0.28 | 0.93 |
19.5 | 32.5 | 6.96 | 21.4 | 4.10 | 0.22 | 256 | 3.85 | 0.31 | 1.09 |
20.8 | 29.7 | 6.14 | 24.7 | 4.08 | 0.20 | 256 | 2.36 | 0.32 | 1.01 |
24.3 | 23.3 | 4.50 | 21.7 | 3.62 | 0.23 | 188 | 4.32 | 0.36 | 0.76 |
29.1 | 20.6 | 7.16 | 29.6 | 3.29 | 0.21 | 190 | 6.12 | 0.33 | 1.30 |
30.5 | 18.2 | 5.68 | 28.3 | 2.97 | 0.23 | 286 | 5.90 | 0.30 | 1.16 |
33.4 | 16.2 | 7.81 | 24.4 | 2.93 | 0.20 | 245 | 8.83 | 0.33 | 1.27 |
35.0 | 15.6 | 6.11 | 32.1 | 5.25 | 0.22 | 267 | 7.48 | 0.25 | 1.43 |
40.3 | 12.1 | 6.93 | 24.3 | 4.17 | 0.48 | 259 | 3.44 | 0.28 | 1.07 |
42.6 | 11.9 | 5.15 | 24.5 | 3.82 | 0.23 | 252 | 6.38 | 0.35 | 0.94 |
46.5 | 10.0 | 5.54 | 23.5 | 3.94 | 0.19 | 224 | 10.73 | 0.25 | 1.37 |
48.9 | 9.6 | 5.83 | 23.8 | 4.75 | 0.24 | 220 | 5.25 | 0.30 | 1.84 |
50.0 | 18.0 | 5.95 | 25.4 | 2.67 | 0.24 | 277 | 5.73 | 0.39 | 1.58 |
(a) | |||||||||||||||||
Time | Ala | Thr | Gly | Val | Ser | Sar | Leu | Asp | Gln | Met | Orn | Phe | Tyr | Lys | Arg | hArg | Trp |
5.5 | 149 | 53 | 82 | 141 | 52 | 1.12 | 143 | 32 | 247 | 35 | 18 | 36 | 31 | 96 | 17 | 1.12 | 5.7 |
7.2 | 281 | 106 | 168 | 296 | 90 | 1.98 | 322 | 70 | 662 | 67 | 38 | 82 | 66 | 203 | 37 | 2.1 | 9.9 |
9.0 | 217 | 91 | 163 | 231 | 80 | 1.45 | 276 | 63 | 560 | 57 | 39 | 75 | 55 | 163 | 25 | 1.52 | 13.5 |
10.7 | 197 | 88 | 173 | 191 | 85 | 1.41 | 249 | 69 | 533 | 57 | 30 | 72 | 50 | 162 | 29 | 1.48 | 16.9 |
11.3 | 190 | 87 | 167 | 178 | 75 | 1.32 | 243 | 63 | 512 | 55 | 29 | 72 | 49 | 160 | 30 | 1.35 | 16.5 |
12.6 | 194 | 93 | 183 | 185 | 87 | 1.36 | 243 | 69 | 534 | 56 | 32 | 77 | 50 | 180 | 34 | 1.28 | 13.2 |
15.9 | 190 | 107 | 197 | 192 | 117 | 1.1 | 259 | 66 | 478 | 54 | 36 | 88 | 57 | 205 | 36 | 1.12 | 16.3 |
30.8 | 280 | 152 | 277 | 303 | 116 | 1.72 | 359 | 92 | 610 | 62 | 77 | 113 | 92 | 220 | 30 | 0.65 | 28.0 |
35.0 | 268 | 116 | 222 | 240 | 128 | 1.3 | 263 | 78 | 496 | 53 | 56 | 98 | 68 | 173 | 29 | 0.48 | 27.4 |
40.3 | 223 | 102 | 184 | 224 | 98 | 1.28 | 254 | 57 | 419 | 47 | 62 | 96 | 62 | 169 | 25 | 0.40 | 31.9 |
48.8 | 240 | 121 | 190 | 298 | 92 | 1.23 | 330 | 72 | 420 | 50 | 56 | 95 | 64 | 174 | 31 | 0.36 | 24.3 |
53.3 | 301 | 102 | 228 | 271 | 110 | 1.34 | 246 | 80 | 483 | 54 | 54 | 99 | 55 | 174 | 28 | 0.38 | 29.0 |
57.0 | 263 | 84 | 202 | 234 | 97 | 1.23 | 199 | 70 | 433 | 49 | 50 | 88 | 46 | 143 | 18 | 0.36 | 27.5 |
62.0 | 211 | 73 | 189 | 206 | 86 | 1.09 | 170 | 67 | 399 | 47 | 42 | 92 | 42 | 137 | 22 | 0.36 | 25.8 |
63.0 | 178 | 67 | 177 | 190 | 94 | 1.01 | 176 | 52 | 373 | 44 | 43 | 87 | 41 | 130 | 22 | 0.32 | 19.3 |
64.7 | 202 | 87 | 187 | 280 | 92 | 1.09 | 269 | 69 | 423 | 50 | 52 | 97 | 49 | 160 | 31 | 0.35 | 14.3 |
66.6 | 217 | 101 | 273 | 296 | 175 | 1.25 | 301 | 81 | 496 | 55 | 96 | 105 | 58 | 169 | 34 | 0.42 | 34.3 |
(b) | |||||||||||||||||
Time | Ala | Thr | Gly | Val | Ser | Sar | Leu | Asp | Gln | Met | Orn | Phe | Tyr | Lys | Arg | hArg | Trp |
5.5 | 175 | 116 | 206 | 95 | 105 | 1.7 | 122 | 81 | 652 | 54.5 | 16.1 | 46.4 | 81 | 224 | 14.9 | 0.27 | 12.9 |
7.2 | 135 | 155 | 246 | 91 | 112 | 1.8 | 107 | 101 | 823 | 63.8 | 21.0 | 55.7 | 82 | 226 | 13.9 | 0.24 | 20.4 |
9.0 | 126 | 200 | 309 | 80 | 141 | 1.5 | 136 | 134 | 850 | 66.6 | 20.7 | 61.7 | 90 | 252 | 15.2 | 0.22 | 23.8 |
10.7 | 284 | 139 | 199 | 227 | 101 | 2.0 | 174 | 81 | 762 | 61.6 | 24.3 | 54.2 | 99 | 365 | 14.0 | 0.52 | 14.1 |
11.3 | 290 | 150 | 217 | 219 | 108 | 2.4 | 182 | 88 | 847 | 66.4 | 25.5 | 58.0 | 108 | 380 | 15.9 | 0.53 | 15.5 |
12.6 | 147 | 281 | 506 | 74 | 206 | 2.0 | 234 | 250 | 953 | 69.2 | 23.4 | 88.9 | 102 | 282 | 30.5 | 0.23 | 25.1 |
15.9 | 179 | 397 | 745 | 94 | 302 | 2.5 | 332 | 553 | 1202 | 83.1 | 37.6 | 125.9 | 135 | 421 | 46.8 | 0.27 | 35.2 |
30.8 | 320 | 524 | 985 | 132 | 420 | 4.2 | 530 | 946 | 947 | 77.5 | 64.0 | 198.9 | 208 | 480 | 85.6 | 0.22 | 78.6 |
35.0 | 258 | 283 | 659 | 129 | 279 | 3.3 | 376 | 631 | 745 | 62.6 | 38.0 | 136.5 | 150 | 293 | 57.2 | 0.18 | 43.9 |
40.3 | 361 | 233 | 740 | 172 | 315 | 5.0 | 507 | 761 | 928 | 65.7 | 39.4 | 185.0 | 179 | 248 | 87.5 | 0.19 | 57.8 |
46.5 | 515 | 194 | 854 | 137 | 293 | 8.0 | 539 | 939 | 932 | 63.1 | 65.2 | 176.8 | 169 | 235 | 66.2 | 0.2 | 71.4 |
48.8 | 432 | 165 | 724 | 113 | 248 | 5.6 | 338 | 820 | 784 | 51.3 | 46.7 | 135.1 | 135 | 167 | 41.8 | 0.13 | 66.6 |
50.8 | 277 | 152 | 500 | 84 | 206 | 3.1 | 204 | 579 | 572 | 43.4 | 31.3 | 77.5 | 91 | 143 | 38.8 | 0.1 | 44.0 |
53.3 | 223 | 67 | 405 | 26 | 134 | 2.5 | 63 | 421 | 374 | 34.8 | 20.1 | 32.0 | 50 | 35 | 9.3 | 0.08 | 24.7 |
57.0 | 237 | 96 | 469 | 43 | 165 | 2.4 | 81 | 412 | 444 | 39.9 | 15.5 | 35.6 | 53 | 56 | 11.4 | 0.08 | 17.9 |
62.0 | 148 | 77 | 429 | 35 | 142 | 2.9 | 84 | 312 | 425 | 37.3 | 14.7 | 37.0 | 48 | 70 | 12.2 | 0.07 | 22.5 |
63.0 | 137 | 82 | 437 | 36 | 149 | 2.8 | 91 | 264 | 421 | 39.6 | 13.3 | 39.2 | 48 | 75 | 14.6 | 0.07 | 15.8 |
64.7 | 118 | 69 | 407 | 31 | 127 | 3.0 | 78 | 164 | 427 | 40.1 | 14.0 | 39.0 | 46 | 81 | 12.4 | 0.07 | 23.3 |
66.6 | 107 | 93 | 439 | 34 | 158 | 3.1 | 102 | 199 | 479 | 44.5 | 20.0 | 40.6 | 55 | 118 | 13.6 | 0.09 | 27.7 |
(c) | |||||||||||||||||
Time | Ala | Thr | Gly | Val | Ser | Sar | Leu | Asp | Gln | Met | Orn | Phe | Tyr | Lys | Arg | hArg | Trp |
5.0 | 71 | 17 | 28 | 66 | 11.8 | 0.58 | 55 | 9.2 | 104 | 15.3 | 4.7 | 14.1 | 13.3 | 31 | 7.4 | 0.59 | 2.1 |
8.8 | 203 | 77 | 115 | 238 | 43.7 | 2.68 | 242 | 40.2 | 541 | 38.9 | 21.3 | 67.0 | 58.4 | 138 | 38.5 | 1.71 | 10.4 |
11.0 | 140 | 64 | 111 | 166 | 35.5 | 1.37 | 161 | 35.1 | 432 | 35.2 | 16.2 | 56.6 | 40.8 | 103 | 28.5 | 1.36 | 6.5 |
12.0 | 125 | 60 | 109 | 137 | 34.5 | 1.45 | 139 | 33.2 | 421 | 33.7 | 15.0 | 52.7 | 38.3 | 108 | 27.0 | 1.20 | 6.8 |
13.0 | 135 | 72 | 135 | 153 | 40.4 | 1.45 | 166 | 41.9 | 482 | 36.8 | 18.1 | 63.5 | 42.8 | 133 | 33.0 | 1.21 | 7.7 |
15.3 | 156 | 88 | 157 | 160 | 51.5 | 2.02 | 196 | 49.2 | 486 | 39.0 | 22.1 | 71.4 | 50.5 | 148 | 43.0 | 1.22 | 10.0 |
17.6 | 145 | 90 | 152 | 154 | 53.0 | 1.35 | 192 | 47.8 | 426 | 35.8 | 21.0 | 72.0 | 50.4 | 148 | 43.9 | 0.98 | 9.7 |
19.5 | 181 | 106 | 158 | 179 | 60.6 | 1.19 | 223 | 52.4 | 395 | 34.3 | 25.4 | 79.8 | 60.5 | 163 | 50.7 | 0.84 | 11.4 |
20.8 | 158 | 125 | 143 | 191 | 65.9 | 1.58 | 240 | 57.0 | 418 | 35.1 | 26.9 | 83.8 | 70.8 | 181 | 54.3 | 0.80 | 12.3 |
24.3 | 207 | 129 | 170 | 204 | 68.3 | 1.25 | 249 | 58.2 | 375 | 34.4 | 28.5 | 84.4 | 76.7 | 175 | 60.3 | 0.70 | 13.2 |
29.1 | 205 | 121 | 165 | 210 | 61.9 | 1.75 | 240 | 52.9 | 371 | 34.6 | 33.2 | 83.5 | 77.4 | 141 | 46.8 | 0.64 | 14.9 |
30.5 | 182 | 123 | 168 | 220 | 62.4 | 1.88 | 259 | 52.4 | 369 | 35.6 | 35.7 | 85.6 | 73.0 | 140 | 48.9 | 0.58 | 15.1 |
33.4 | 208 | 112 | 156 | 221 | 58.4 | 1.91 | 227 | 52.2 | 358 | 34.9 | 34.1 | 84.1 | 65.7 | 121 | 41.3 | 0.48 | 13.6 |
35.0 | 187 | 96 | 140 | 181 | 51.1 | 1.69 | 180 | 45.6 | 317 | 31.6 | 28.3 | 77.8 | 54.4 | 107 | 34.6 | 0.46 | 11.8 |
40.3 | 153 | 83 | 124 | 177 | 46.1 | 1.28 | 173 | 36.3 | 251 | 28.0 | 27.8 | 74.6 | 46.6 | 105 | 32.6 | 0.33 | 11.2 |
42.6 | 195 | 107 | 139 | 250 | 51.1 | 1.64 | 246 | 47.3 | 318 | 32.8 | 47.4 | 91.6 | 65.0 | 130 | 35.3 | 0.40 | 14.3 |
46.5 | 180 | 95 | 128 | 215 | 45.1 | 1.44 | 204 | 46.1 | 291 | 29.9 | 41.8 | 85.1 | 56.9 | 109 | 28.7 | 0.33 | 14.5 |
48.9 | 157 | 101 | 128 | 223 | 52.1 | 1.13 | 257 | 48.8 | 295 | 33.7 | 37.6 | 81.5 | 51.4 | 116 | 40.1 | 0.36 | 17.3 |
50.0 | 198 | 122 | 162 | 234 | 63.9 | 1.66 | 267 | 52.9 | 367 | 37.9 | 36.3 | 89.5 | 71.5 | 136 | 49.0 | 0.56 | 14.2 |
Analyte | Men [34] | Women [33] | MALA Patient 5.5 h–66 h | Fold Change | Refs. |
Creatinine | 82–101 | n.m. | −230 | −0.6 | [36] |
Malondialdehyde | 0.31–0.46 | n.m. | 1.16–0.82 | −0.7 | [16] |
Metformin | n.a. | n.a. | −4 | −19.0 | n.a. |
Nitrate | 38–55 | n.m. | 57–60 | +1.0 | [14] |
Nitrite | 1.9–2.6 | n.m. | 2.64–3.08 | +1.2 | [14] |
Amino acids | |||||
ADMA | 0.187–0.534 | n.m. | 0.220–0.420 | +1.9 | [30] |
Alanine | 254–392 | 203–443 | 149–217 | +1.5 | [33] |
Arginine | 50–90 | 50–119 | 17–34 | +2.0 | [33] |
Asparagine | 48–94 | 33–59 | 32–81 | +2.5 | [33] |
Citrulline | 34–48 | 18–42 | +2.3 | [33] | |
Glutamine | 449–654 | 414–669 12–57 | 247–496 | +2.0 | [33] |
Glycine | 147–248 | 149–397 | 82.0–273 | +3.3 | [33] |
Guanidinoacetate | 1.77–4.57 | n.m. | 1.42–2.28 | +0.9 | none |
Homoarginine | 0.66–1.74 | n.m. | 1.12–0.42 | −2.7 | [32] |
Hydroxyproline | 5.8–10.9 | n.m. | 5.94–5.58 | −0.9 | none |
Leucine | 155–254 | 74–125 35–66 | 143–301 | +2.1 | [33] |
Lysine | 110–171 | 115–223 | 96–169 | +1.8 | [33] |
Methionine | 41–59 | 17–30 | 35–55 | +1.6 | [33] |
Ornithine | see Cit | 25–68 | 18–96 | +5.3 | [33] |
Phenylalanine | 39–69 | 42–66 | 36–105 | +2.9 | [33] |
Proline | 118–230 | 70–188 | 68–86 | +1.3 | [33] |
Sarcosine | 1.3–2.6 | n.m. | 1.12–1.25 | +1.1 | [33] |
SDMA | n.m. | n.m. | 1.48–1.52 | +1.4 | [30] |
Serine | 106–210 | 80–157 | 52–175 | +3.4 | [33] |
Threonine | 105–162 | 68–169 | 53–101 | +1.9 | [33] |
Tryptophan | 6.3–20.4 | 41–68 | 5.7–34.3 | +6.0 | [33] |
Tyrosine | 36–64 | 40–74 | 31–58 | +1.9 | [33] |
Valine | 218–286 | 138–243 | 141–296 | +2.1 | [33] |
NεMK | n.m. | n.m. | 1.14–1.19 | +1.04 | [27] |
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Posma, R.A.; Bakker, S.J.L.; Nijsten, M.W.; Touw, D.J.; Tsikas, D. Comprehensive GC-MS Measurement of Amino Acids, Metabolites, and Malondialdehyde in Metformin-Associated Lactic Acidosis at Admission and during Renal Replacement Treatment. J. Clin. Med. 2024, 13, 3692. https://doi.org/10.3390/jcm13133692
Posma RA, Bakker SJL, Nijsten MW, Touw DJ, Tsikas D. Comprehensive GC-MS Measurement of Amino Acids, Metabolites, and Malondialdehyde in Metformin-Associated Lactic Acidosis at Admission and during Renal Replacement Treatment. Journal of Clinical Medicine. 2024; 13(13):3692. https://doi.org/10.3390/jcm13133692
Chicago/Turabian StylePosma, Rene A., Stephan J. L. Bakker, Maarten W. Nijsten, Daan J. Touw, and Dimitrios Tsikas. 2024. "Comprehensive GC-MS Measurement of Amino Acids, Metabolites, and Malondialdehyde in Metformin-Associated Lactic Acidosis at Admission and during Renal Replacement Treatment" Journal of Clinical Medicine 13, no. 13: 3692. https://doi.org/10.3390/jcm13133692
APA StylePosma, R. A., Bakker, S. J. L., Nijsten, M. W., Touw, D. J., & Tsikas, D. (2024). Comprehensive GC-MS Measurement of Amino Acids, Metabolites, and Malondialdehyde in Metformin-Associated Lactic Acidosis at Admission and during Renal Replacement Treatment. Journal of Clinical Medicine, 13(13), 3692. https://doi.org/10.3390/jcm13133692