Cargando…

Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice

Mass spectrometry imaging (MSI) is well-known for the non-labeling visualization of analytes, including drugs and their metabolites in biological samples. In this study, we applied three different tools of MSI, desorption electrospray ionization (DESI)-MSI, matrix-assisted laser desorption ionizatio...

Descripción completa

Detalles Bibliográficos
Autores principales: Islam, Ariful, Sakamoto, Takumi, Zhai, Qing, Rahman, Md. Muedur, Mamun, Md. Al, Takahashi, Yutaka, Kahyo, Tomoaki, Setou, Mitsutoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696843/
https://www.ncbi.nlm.nih.gov/pubmed/36355486
http://dx.doi.org/10.3390/ph15111314
_version_ 1784838409031778304
author Islam, Ariful
Sakamoto, Takumi
Zhai, Qing
Rahman, Md. Muedur
Mamun, Md. Al
Takahashi, Yutaka
Kahyo, Tomoaki
Setou, Mitsutoshi
author_facet Islam, Ariful
Sakamoto, Takumi
Zhai, Qing
Rahman, Md. Muedur
Mamun, Md. Al
Takahashi, Yutaka
Kahyo, Tomoaki
Setou, Mitsutoshi
author_sort Islam, Ariful
collection PubMed
description Mass spectrometry imaging (MSI) is well-known for the non-labeling visualization of analytes, including drugs and their metabolites in biological samples. In this study, we applied three different tools of MSI, desorption electrospray ionization (DESI)-MSI, matrix-assisted laser desorption ionization (MALDI)-MSI, and a newly developed atmospheric pressure (AP)-MALDI-MSI known as iMScope(TM) QT for rapid mapping of imipramine, chloroquine, and their metabolites in C57BL/6 male wild-type mice. Among three MSI tools, better detection capability for targeted drugs at higher speed (up to 32 pixels/s) was observed in iMScope QT. It revealed that imipramine and its metabolites were significantly accumulated in the renal cortex of mice, but chloroquine and its metabolites were highly accumulated in the renal pelvis and renal medulla of mice. Additionally, a higher accumulation of imipramine was noted in the thalamus, hypothalamus, septum, and hindbrain of mice brains. However, chloroquine and its metabolites showed notable accumulation in the lateral ventricle, fourth ventricle, and fornix of the mice brains. These findings of our study can be helpful in understanding clinically relevant properties, efficacy, and potential side effects of these drugs. Our study also showed the potentiality of iMScope QT for rapid mapping of small drugs and their metabolites in biological samples.
format Online
Article
Text
id pubmed-9696843
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96968432022-11-26 Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice Islam, Ariful Sakamoto, Takumi Zhai, Qing Rahman, Md. Muedur Mamun, Md. Al Takahashi, Yutaka Kahyo, Tomoaki Setou, Mitsutoshi Pharmaceuticals (Basel) Communication Mass spectrometry imaging (MSI) is well-known for the non-labeling visualization of analytes, including drugs and their metabolites in biological samples. In this study, we applied three different tools of MSI, desorption electrospray ionization (DESI)-MSI, matrix-assisted laser desorption ionization (MALDI)-MSI, and a newly developed atmospheric pressure (AP)-MALDI-MSI known as iMScope(TM) QT for rapid mapping of imipramine, chloroquine, and their metabolites in C57BL/6 male wild-type mice. Among three MSI tools, better detection capability for targeted drugs at higher speed (up to 32 pixels/s) was observed in iMScope QT. It revealed that imipramine and its metabolites were significantly accumulated in the renal cortex of mice, but chloroquine and its metabolites were highly accumulated in the renal pelvis and renal medulla of mice. Additionally, a higher accumulation of imipramine was noted in the thalamus, hypothalamus, septum, and hindbrain of mice brains. However, chloroquine and its metabolites showed notable accumulation in the lateral ventricle, fourth ventricle, and fornix of the mice brains. These findings of our study can be helpful in understanding clinically relevant properties, efficacy, and potential side effects of these drugs. Our study also showed the potentiality of iMScope QT for rapid mapping of small drugs and their metabolites in biological samples. MDPI 2022-10-25 /pmc/articles/PMC9696843/ /pubmed/36355486 http://dx.doi.org/10.3390/ph15111314 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Islam, Ariful
Sakamoto, Takumi
Zhai, Qing
Rahman, Md. Muedur
Mamun, Md. Al
Takahashi, Yutaka
Kahyo, Tomoaki
Setou, Mitsutoshi
Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice
title Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice
title_full Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice
title_fullStr Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice
title_full_unstemmed Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice
title_short Application of AP-MALDI Imaging Mass Microscope for the Rapid Mapping of Imipramine, Chloroquine, and Their Metabolites in the Kidney and Brain of Wild-Type Mice
title_sort application of ap-maldi imaging mass microscope for the rapid mapping of imipramine, chloroquine, and their metabolites in the kidney and brain of wild-type mice
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696843/
https://www.ncbi.nlm.nih.gov/pubmed/36355486
http://dx.doi.org/10.3390/ph15111314
work_keys_str_mv AT islamariful applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT sakamototakumi applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT zhaiqing applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT rahmanmdmuedur applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT mamunmdal applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT takahashiyutaka applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT kahyotomoaki applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice
AT setoumitsutoshi applicationofapmaldiimagingmassmicroscopefortherapidmappingofimipraminechloroquineandtheirmetabolitesinthekidneyandbrainofwildtypemice