761
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

A Simple High-Performance Liquid Chromatographic Method for the Simultaneous Determination of Monoamine Neurotransmitters and Relative Metabolites with Application in Mouse Brain Tissue

, &

References

  • Carlsson, A. Perspectives on the Discovery of Central Monoaminergic Neurotransmission. Ann. Rev. Neurosci. 1987, 10, 19–40.
  • Greengard, P. The Neurobiology of Slow Synaptic Transmission. Science 2001, 294, 1024–1030.
  • Boyer, P. Do Anxiety and Depression Have a Common Pathophysiological Mechanism? Acta Pschiatr. Scand. 2000, 102, 24–29.
  • Carlsson, M.; Carlsson, A. Interactions Between Glutamatergic and Monoaminergic Systems Within the Basal Ganglia—Implications for Scizophrenia and Parkinson's Disease. Trends Neurosci. 1990, 13 (7), 272–276.
  • VanWert, A. L.; Gionfriddo, M. R.; Sweet, D. H. Organic Anion Transporters: Discovery, Pharmacology, Regulation and Roles in Pathophysiology. Biopharm. Drug Dispos. 2010, 31, 1–71.
  • Wang, L.; Sweet, D. H. Renal Organic Anion Transporter (SLC22 Family): Expression, Regulation, Roles in Toxicity, and Impact on Injury and Disease. AAPS J. 2013, 15, 53–69.
  • Farthing, C. A.; Sweet, D. H. Expression and Function of Organic Cation and Anion Transporters (SLC22 Family) in the CNS. Curr. Pharm. Des. 2014, 20, 1472–1486.
  • Mashige, F.; Ohkubo, A.; Matsushima, Y.; Takano, M.; Tsuchiya, E.; Kanazawa, H.; Nagata, Y.; Takai, N.; Shinozuka, N.; Sakuma, I. High-Performance Liquid Chromatographic Determination of Catecholamine Metabolites and 5-Hydroxyindoleacetic Acid in Human Urine Using a Mixed-Mode Column and an Eight-Channel Electrode Electrochemical Detector. J. Chrom. B 1994, 658, 63–68.
  • Wang, Y.; Fice, D. S.; Yeung, P. K. A Simple High-Performance Liquid Chromatography Assay for Simultaneous Determination of Plasma Norepinephrine, Epinephrine, Dopamine, and 3,4-Dihydroxyphenylacetic Acid. J. Pharm. Biomed. Anal. 1999, 21 (3), 519–525.
  • Lakshmana, M. K.; Raju, T. R. An Isocratic Assay for Norepinephrine, Dopamine, and 5-Hydroxytryptamine Using Their Native Fluorescence by High-Performance Liquid Chromatography with Fluorescence Detection in Discrete Brain Areas of Rats. Anal. Biochem. 1997, 246 (2), 166–170.
  • Chan, E. C.; Ho, P. C. High-Performance Liquid Chromatography/Atmospheric Pressure Chemical Ionization Mass Spectrometric Method for the Analysis of Catecholamines and Metanephrines in Human Urine. Rapid Commun. Mass Spectrom. 2000, 14 (21), 1959–1964.
  • Törnkvist, A.; Sjöberg, P. J. R.; Markides, K. E.; Bergquist, J. Analysis of Catecholamines and Related Substances Using Porous Graphite Carbon as Separation Media in Liquid Chromatography-Tandem Mass Spectrometry. J. Chrom. B 2004, 801 (2), 323–329.
  • Fauler, G.; Leis, H. J.; Huber, E.; Schellauf, C.; Kerbl, R.; Urban, C. Determination of Homovanillic Acid and Vanillylmandelic Acid in Neuroblastoma Screening by Stable Isotope. J. Mass Spectrom. 1997, 32 (5), 507–514.
  • Schmidt, D.; Roznoski, M.; Ebert, M. Qualitative and Quantitative High Performance Liquid Chromatographic Analysis of Monoamine Neurotransmitters and Metabolites in Cerebrospinal Fluid and Brain Tissue Using Reductive Electrochemical Detection. Biomed. Chrom. 1990, 4, 215–220.
  • Herregodts, P.; Deleu, D.; De Klippel, N.; Ebinger, G. High-Performance Liquid Chromatography with Electrochemical Detection for the Determination of Levodopa, Catecholamines, and Their Metabolites in Rat Brain Dialysates. J. Chrom. 1992, 575, 207–212.
  • Jin, W.; Jin, L.; Shi, G.; Ye, J. Determination of Monoamine Transmitters and Their Metabolites by Capillary Electrophoresis with Electrochemical Detection. Anal. Chim. Acta 1999, 382, 33–37.
  • Parrot, S.; Lambás-Señas, Sentenac, S.; Denoroy, L.; Renaud, B. Highly Sensitive Assay for the Measurement of Serotonin in Microdialysis Using Capillary High-Performance Liquid Chromatography with Electrochemical Detection. J. Chrom. B 2007, 850, 303–309.
  • Vaarmann, A.; Kask, A.; Mäeorg, U. Novel and Sensitive High-Performance Liquid Chromatographic Method Based on Electrochemical Coulometric Array Detection for Simultaneous Determination of Catecholamines, Kynurenine, and Indole Derivatives of Tryptophan. J. Chrom. B 2002, 769, 145–153.
  • Presits, P.; Molnar-Perl, I. HPLC of Tryptophan and Its Metabolites Using Simultaneous UV, Native Fluorescence and Pre-Column Fluorescence Derivatization. Chromatographia 2003, 57, S87–D92.
  • Badawy, A.; Morgan, C. J. Rapid Isocratic Liquid Chromatographic Separation and Quantification of Tryptophan and Six Kynurenine Metabolites in Biological Samples with Ultraviolet and Fluorimetric Detection. Int. J. Tryp. Res. 2010, 3, 175–186.
  • Zhao, J.; Chen, H.; Ni, P.; Xu, B.; Xuemei, L.; Yiming, Z.; Gao, P.; Zhu, D. Simultaneous Determination of Urinary Tryptophan, Tryptophan-Related Metabolites, and Creatinine by High Performance Liquid Chromatography with Ultraviolet and Fluorimetric Detection. J. Chrom. B 2011, 879, 2720–2725.
  • Wildelmina, H. A.; Reinier, S.; Bakker, S. J. L.; de Vries, E. G. E.; Kema, I. P. Plasma Tryptophan, Kynurenine and 3-Hydroxykunurenine Measurement Using Automated On-Line Solid-Phase Extraction HPLC-Tandem Mass Spectrometry. J. Chrom. B 2009, 877, 603–609.
  • Laio, X.; Zhu, J.; Rubab, M.; Feng, Y.; Poon, R. An Analytical Method for the Measurement of Acid Metabolites of Tryptophan-NAD Pathway and Related Acids in Urine. J. Chrom. B 2010, 878, 1003–1006.
  • Möller, M.; Du Preez, J. L.; Harvey, B. Development and Validation of a Single Analytical Method for the Determination of Tryptophan and Its Kynurenine Metabolites in Rat Plasma. J. Chrom. B 2012, 898, 121–129.
  • Zhu, W.; Stevens, A.; Dettmer, K.; Gottfried, E.; Hoves, S.; Kreutz, M.; Holler, E.; Canelas, A. B.; Kema, I.; Oefner, P. Quantitative Profiling of Tryptophan Metabolites in Serum, Urine, and Cell Culture Supernatants by Liquid Chromatography-Tandem Mass Spectrometry. Anal. Bioanal. Chem. 2011, 401, 3249–3261.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.