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Pyrylium Salts as Reactive Matrices for MALDI-MS Imaging of Biologically Active Primary Amines
119
Citations
26
References
2015
Year
Pyrylium SaltsMaldi-ms ImagingPharmaceutical ScienceEngineeringImaging AgentBiological Mass SpectrometryPeptide ScienceReactive Maldi-ms MatrixExperimental PharmacologyPharmaceutical ChemistryChemical DerivativeMolecular PharmacologyReactive MatricesChemical ImageBioanalysisAnalytical ChemistryBioimagingNeurochemistryPrimary AminesBiochemistryNeuropharmacologyContrast AgentPharmacologyBiomolecular EngineeringMagnetic Resonance SpectroscopyBiomedical ImagingMass SpectrometryMonoamine NeurotransmittersMedicineSmall MoleculesDrug Analysis
Many neuroactive substances, including endogenous biomolecules, environmental compounds, and pharmaceuticals possess primary amine functional groups. Among these are catecholamine neurotransmitters (e.g., dopamine), many substituted phenethylamines (e.g., amphetamine), as well as amino acids and neuropeptides. In most cases, mass spectrometric (ESI and MALDI) analyses of trace amounts of such compounds are challenging because of their poor ionization properties. We present a method for chemical derivatization of primary amines by reaction with pyrylium salts that facilitates their detection by MALDI-MS and enables the imaging of primary amines in brain tissue sections. A screen of pyrylium salts revealed that the 2,4-diphenyl-pyranylium ion efficiently derivatizes primary amines and can be used as a reactive MALDI-MS matrix that induces both derivatization and desorption. MALDI-MS imaging with such matrix was used to map the localization of dopamine and amphetamine in brain tissue sections and to quantitatively map the distribution of the neurotoxin β-N-methylamino-L-alanine.
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