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Coating of a MALDI target with metal oxide nanoparticles by droplet-free electrospraying – a versatile tool for in situ enrichment of human globin adducts of halogen-containing drug metabolites. / Gladchuk, Alexey S. ; Gorbunov, Alexander Yu.; Keltsieva, Olga A.; Ilyushonok, Semen K.; Babakov, Vladimir N.; Shilovskikh, Vladimir V. ; Kolonitskii, Petr D. ; Stepashkin, Nikita A. ; Soboleva, Alena ; Muradymov, Marat Z.; Krasnov, Nikolai V.; Sukhodolov, Nikolai G. ; Selyutin, Artem A. ; Фролов, Андрей Александрович; Podolskaya, Ekaterina P.

в: Microchemical Journal, Том 191, 108708, 01.08.2023.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

APA

Gladchuk, A. S., Gorbunov, A. Y., Keltsieva, O. A., Ilyushonok, S. K., Babakov, V. N., Shilovskikh, V. V., Kolonitskii, P. D., Stepashkin, N. A., Soboleva, A., Muradymov, M. Z., Krasnov, N. V., Sukhodolov, N. G., Selyutin, A. A., Фролов, А. А., & Podolskaya, E. P. (2023). Coating of a MALDI target with metal oxide nanoparticles by droplet-free electrospraying – a versatile tool for in situ enrichment of human globin adducts of halogen-containing drug metabolites. Microchemical Journal, 191, [108708]. https://doi.org/10.1016/j.microc.2023.108708

Vancouver

Author

Gladchuk, Alexey S. ; Gorbunov, Alexander Yu. ; Keltsieva, Olga A. ; Ilyushonok, Semen K. ; Babakov, Vladimir N. ; Shilovskikh, Vladimir V. ; Kolonitskii, Petr D. ; Stepashkin, Nikita A. ; Soboleva, Alena ; Muradymov, Marat Z. ; Krasnov, Nikolai V. ; Sukhodolov, Nikolai G. ; Selyutin, Artem A. ; Фролов, Андрей Александрович ; Podolskaya, Ekaterina P. / Coating of a MALDI target with metal oxide nanoparticles by droplet-free electrospraying – a versatile tool for in situ enrichment of human globin adducts of halogen-containing drug metabolites. в: Microchemical Journal. 2023 ; Том 191.

BibTeX

@article{45e3ee0b5e8c4f1a886d3bd1c07b9f6e,
title = "Coating of a MALDI target with metal oxide nanoparticles by droplet-free electrospraying – a versatile tool for in situ enrichment of human globin adducts of halogen-containing drug metabolites",
abstract = "The strategies for integration of different orthogonal analytical procedures directly on the targets for matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) are being intensively developed over the last two decades. This methodology, which is usually referred to as “lab-on-a-plate”, proved to be the method of choice for fast and reproducible sample preparation prior to MALDI-MS analysis. To date, numerous “lab-on-a-plate” protocols for enrichment of phosphorylated peptides by metal oxide affinity chromatography (MOAC) are established. However, despite this, a straightforward and efficient implementation of the on-target workflow for selective MOAC-based enrichment of the protein adducts formed by halogen-containing xenobiotics is still missing. Therefore, here we present a successful application of droplet-free electrospraying under normal conditions for efficient deposition of metal oxide (MeOx) nanoparticles on the MALDI target. Here we employed oxides of four transition metals - Fe(III), Co(II/III), Ni(II) and Cu(II). These materials were synthesized by the microwave-assisted sol-gel approach and electrosprayed post-synthetically on a stainless steel MALDI target. Thus, stable coating of the target could be achieved without heating and any damage of its surface. As a case study, MALDI targets were deposited with MeOx nanoparticles, and human globin adducts with in vitro generated diclofenac (DCL) metabolites were enriched on spot from the tryptic digests of the protein treated with DCL oxidation mixture. This extraction procedure gave access to efficient, selective and reliable identification of the human globin adduct with decarboxylation oxidation product of DCL. The developed approach appears to be promising for in situ enrichment of halogen-containing adducts of proteins due to simplifying the sample treatment and minimizing sample losses.",
keywords = "Diclofenac, Drug adducts, Electrospraying, Metal oxide affinity chromatography, Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry, Nanoparticles",
author = "Gladchuk, {Alexey S.} and Gorbunov, {Alexander Yu.} and Keltsieva, {Olga A.} and Ilyushonok, {Semen K.} and Babakov, {Vladimir N.} and Shilovskikh, {Vladimir V.} and Kolonitskii, {Petr D.} and Stepashkin, {Nikita A.} and Alena Soboleva and Muradymov, {Marat Z.} and Krasnov, {Nikolai V.} and Sukhodolov, {Nikolai G.} and Selyutin, {Artem A.} and Фролов, {Андрей Александрович} and Podolskaya, {Ekaterina P.}",
year = "2023",
month = aug,
day = "1",
doi = "10.1016/j.microc.2023.108708",
language = "English",
volume = "191",
journal = "Microchemical Journal",
issn = "0026-265X",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Coating of a MALDI target with metal oxide nanoparticles by droplet-free electrospraying – a versatile tool for in situ enrichment of human globin adducts of halogen-containing drug metabolites

AU - Gladchuk, Alexey S.

AU - Gorbunov, Alexander Yu.

AU - Keltsieva, Olga A.

AU - Ilyushonok, Semen K.

AU - Babakov, Vladimir N.

AU - Shilovskikh, Vladimir V.

AU - Kolonitskii, Petr D.

AU - Stepashkin, Nikita A.

AU - Soboleva, Alena

AU - Muradymov, Marat Z.

AU - Krasnov, Nikolai V.

AU - Sukhodolov, Nikolai G.

AU - Selyutin, Artem A.

AU - Фролов, Андрей Александрович

AU - Podolskaya, Ekaterina P.

PY - 2023/8/1

Y1 - 2023/8/1

N2 - The strategies for integration of different orthogonal analytical procedures directly on the targets for matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) are being intensively developed over the last two decades. This methodology, which is usually referred to as “lab-on-a-plate”, proved to be the method of choice for fast and reproducible sample preparation prior to MALDI-MS analysis. To date, numerous “lab-on-a-plate” protocols for enrichment of phosphorylated peptides by metal oxide affinity chromatography (MOAC) are established. However, despite this, a straightforward and efficient implementation of the on-target workflow for selective MOAC-based enrichment of the protein adducts formed by halogen-containing xenobiotics is still missing. Therefore, here we present a successful application of droplet-free electrospraying under normal conditions for efficient deposition of metal oxide (MeOx) nanoparticles on the MALDI target. Here we employed oxides of four transition metals - Fe(III), Co(II/III), Ni(II) and Cu(II). These materials were synthesized by the microwave-assisted sol-gel approach and electrosprayed post-synthetically on a stainless steel MALDI target. Thus, stable coating of the target could be achieved without heating and any damage of its surface. As a case study, MALDI targets were deposited with MeOx nanoparticles, and human globin adducts with in vitro generated diclofenac (DCL) metabolites were enriched on spot from the tryptic digests of the protein treated with DCL oxidation mixture. This extraction procedure gave access to efficient, selective and reliable identification of the human globin adduct with decarboxylation oxidation product of DCL. The developed approach appears to be promising for in situ enrichment of halogen-containing adducts of proteins due to simplifying the sample treatment and minimizing sample losses.

AB - The strategies for integration of different orthogonal analytical procedures directly on the targets for matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) are being intensively developed over the last two decades. This methodology, which is usually referred to as “lab-on-a-plate”, proved to be the method of choice for fast and reproducible sample preparation prior to MALDI-MS analysis. To date, numerous “lab-on-a-plate” protocols for enrichment of phosphorylated peptides by metal oxide affinity chromatography (MOAC) are established. However, despite this, a straightforward and efficient implementation of the on-target workflow for selective MOAC-based enrichment of the protein adducts formed by halogen-containing xenobiotics is still missing. Therefore, here we present a successful application of droplet-free electrospraying under normal conditions for efficient deposition of metal oxide (MeOx) nanoparticles on the MALDI target. Here we employed oxides of four transition metals - Fe(III), Co(II/III), Ni(II) and Cu(II). These materials were synthesized by the microwave-assisted sol-gel approach and electrosprayed post-synthetically on a stainless steel MALDI target. Thus, stable coating of the target could be achieved without heating and any damage of its surface. As a case study, MALDI targets were deposited with MeOx nanoparticles, and human globin adducts with in vitro generated diclofenac (DCL) metabolites were enriched on spot from the tryptic digests of the protein treated with DCL oxidation mixture. This extraction procedure gave access to efficient, selective and reliable identification of the human globin adduct with decarboxylation oxidation product of DCL. The developed approach appears to be promising for in situ enrichment of halogen-containing adducts of proteins due to simplifying the sample treatment and minimizing sample losses.

KW - Diclofenac

KW - Drug adducts

KW - Electrospraying

KW - Metal oxide affinity chromatography

KW - Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry

KW - Nanoparticles

UR - https://www.mendeley.com/catalogue/8cca52ae-e016-33aa-bd11-bb54136a8372/

U2 - 10.1016/j.microc.2023.108708

DO - 10.1016/j.microc.2023.108708

M3 - Article

VL - 191

JO - Microchemical Journal

JF - Microchemical Journal

SN - 0026-265X

M1 - 108708

ER -

ID: 104051179