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On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging

[Image: see text] The visualization of small metabolites by MALDI mass spectrometry imaging in brain tissue sections is challenging due to low detection sensitivity and high background interference. We present an on-tissue chemical derivatization MALDI mass spectrometry imaging approach for the comp...

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Autores principales: Kaya, Ibrahim, Schembri, Luke S., Nilsson, Anna, Shariatgorji, Reza, Baijnath, Sooraj, Zhang, Xiaoqun, Bezard, Erwan, Svenningsson, Per, Odell, Luke R., Andrén, Per E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10161219/
https://www.ncbi.nlm.nih.gov/pubmed/37052344
http://dx.doi.org/10.1021/jasms.2c00336
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author Kaya, Ibrahim
Schembri, Luke S.
Nilsson, Anna
Shariatgorji, Reza
Baijnath, Sooraj
Zhang, Xiaoqun
Bezard, Erwan
Svenningsson, Per
Odell, Luke R.
Andrén, Per E.
author_facet Kaya, Ibrahim
Schembri, Luke S.
Nilsson, Anna
Shariatgorji, Reza
Baijnath, Sooraj
Zhang, Xiaoqun
Bezard, Erwan
Svenningsson, Per
Odell, Luke R.
Andrén, Per E.
author_sort Kaya, Ibrahim
collection PubMed
description [Image: see text] The visualization of small metabolites by MALDI mass spectrometry imaging in brain tissue sections is challenging due to low detection sensitivity and high background interference. We present an on-tissue chemical derivatization MALDI mass spectrometry imaging approach for the comprehensive mapping of carboxyls and aldehydes in brain tissue sections. In this approach, the AMPP (1-(4-(aminomethyl)phenyl)pyridin-1-ium chloride) derivatization reagent is used for the covalent charge-tagging of molecules containing carboxylic acid (in the presence of peptide coupling reagents) and aldehydes. This includes free fatty acids and the associated metabolites, fatty aldehydes, dipeptides, neurotoxic reactive aldehydes, amino acids, neurotransmitters and associated metabolites, as well as tricarboxylic acid cycle metabolites. We performed sensitive ultrahigh mass resolution MALDI-MS detection and imaging of various carboxyl- and aldehyde-containing endogenous metabolites simultaneously in rodent brain tissue sections. We verified the AMPP-derivatized metabolites by tandem MS for structural elucidation. This approach allowed us to image numerous aldehydes and carboxyls, including certain metabolites which had been undetectable in brain tissue sections. We also demonstrated the application of on-tissue derivatization to carboxyls and aldehydes in coronal brain tissue sections of a nonhuman primate Parkinson’s disease model. Our methodology provides a powerful tool for the sensitive, simultaneous spatial molecular imaging of numerous aldehydes and carboxylic acids during pathological states, including neurodegeneration, in brain tissue.
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spelling pubmed-101612192023-05-06 On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging Kaya, Ibrahim Schembri, Luke S. Nilsson, Anna Shariatgorji, Reza Baijnath, Sooraj Zhang, Xiaoqun Bezard, Erwan Svenningsson, Per Odell, Luke R. Andrén, Per E. J Am Soc Mass Spectrom [Image: see text] The visualization of small metabolites by MALDI mass spectrometry imaging in brain tissue sections is challenging due to low detection sensitivity and high background interference. We present an on-tissue chemical derivatization MALDI mass spectrometry imaging approach for the comprehensive mapping of carboxyls and aldehydes in brain tissue sections. In this approach, the AMPP (1-(4-(aminomethyl)phenyl)pyridin-1-ium chloride) derivatization reagent is used for the covalent charge-tagging of molecules containing carboxylic acid (in the presence of peptide coupling reagents) and aldehydes. This includes free fatty acids and the associated metabolites, fatty aldehydes, dipeptides, neurotoxic reactive aldehydes, amino acids, neurotransmitters and associated metabolites, as well as tricarboxylic acid cycle metabolites. We performed sensitive ultrahigh mass resolution MALDI-MS detection and imaging of various carboxyl- and aldehyde-containing endogenous metabolites simultaneously in rodent brain tissue sections. We verified the AMPP-derivatized metabolites by tandem MS for structural elucidation. This approach allowed us to image numerous aldehydes and carboxyls, including certain metabolites which had been undetectable in brain tissue sections. We also demonstrated the application of on-tissue derivatization to carboxyls and aldehydes in coronal brain tissue sections of a nonhuman primate Parkinson’s disease model. Our methodology provides a powerful tool for the sensitive, simultaneous spatial molecular imaging of numerous aldehydes and carboxylic acids during pathological states, including neurodegeneration, in brain tissue. American Chemical Society 2023-04-13 /pmc/articles/PMC10161219/ /pubmed/37052344 http://dx.doi.org/10.1021/jasms.2c00336 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Kaya, Ibrahim
Schembri, Luke S.
Nilsson, Anna
Shariatgorji, Reza
Baijnath, Sooraj
Zhang, Xiaoqun
Bezard, Erwan
Svenningsson, Per
Odell, Luke R.
Andrén, Per E.
On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging
title On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging
title_full On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging
title_fullStr On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging
title_full_unstemmed On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging
title_short On-Tissue Chemical Derivatization for Comprehensive Mapping of Brain Carboxyl and Aldehyde Metabolites by MALDI–MS Imaging
title_sort on-tissue chemical derivatization for comprehensive mapping of brain carboxyl and aldehyde metabolites by maldi–ms imaging
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10161219/
https://www.ncbi.nlm.nih.gov/pubmed/37052344
http://dx.doi.org/10.1021/jasms.2c00336
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