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Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints

This work describes the development of a new approach to measure drug levels and lipid fingerprints in single living mammalian cells. Nanocapillary sampling is an approach that enables the selection and isolation of single living cells under microscope observation. Here, live single cell nanocapilla...

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Autores principales: Lewis, Holly-May, Gupta, Priyanka, Saunders, Kyle D. G., Briones, Shazneil, von Gerichten, Johanna, Townsend, Paul A., Velliou, Eirini, Beste, Dany J. V., Cexus, Olivier, Webb, Roger, Bailey, Melanie J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9969958/
https://www.ncbi.nlm.nih.gov/pubmed/36723178
http://dx.doi.org/10.1039/d2an01732f
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author Lewis, Holly-May
Gupta, Priyanka
Saunders, Kyle D. G.
Briones, Shazneil
von Gerichten, Johanna
Townsend, Paul A.
Velliou, Eirini
Beste, Dany J. V.
Cexus, Olivier
Webb, Roger
Bailey, Melanie J.
author_facet Lewis, Holly-May
Gupta, Priyanka
Saunders, Kyle D. G.
Briones, Shazneil
von Gerichten, Johanna
Townsend, Paul A.
Velliou, Eirini
Beste, Dany J. V.
Cexus, Olivier
Webb, Roger
Bailey, Melanie J.
author_sort Lewis, Holly-May
collection PubMed
description This work describes the development of a new approach to measure drug levels and lipid fingerprints in single living mammalian cells. Nanocapillary sampling is an approach that enables the selection and isolation of single living cells under microscope observation. Here, live single cell nanocapillary sampling is coupled to liquid chromatography for the first time. This allows molecular species to be separated prior to ionisation and improves measurement precision of drug analytes. The efficiency of transferring analytes from the sampling capillary into a vial was optimised in this work. The analysis was carried out using standard flow liquid chromatography coupled to widely available mass spectrometry instrumentation, highlighting opportunities for widespread adoption. The method was applied to 30 living cells, revealing cell-to-cell heterogeneity in the uptake of different drug molecules. Using this system, we detected 14–158 lipid features per single cell, revealing the association between bedaquiline uptake and lipid fingerprints.
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spelling pubmed-99699582023-02-28 Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints Lewis, Holly-May Gupta, Priyanka Saunders, Kyle D. G. Briones, Shazneil von Gerichten, Johanna Townsend, Paul A. Velliou, Eirini Beste, Dany J. V. Cexus, Olivier Webb, Roger Bailey, Melanie J. Analyst Chemistry This work describes the development of a new approach to measure drug levels and lipid fingerprints in single living mammalian cells. Nanocapillary sampling is an approach that enables the selection and isolation of single living cells under microscope observation. Here, live single cell nanocapillary sampling is coupled to liquid chromatography for the first time. This allows molecular species to be separated prior to ionisation and improves measurement precision of drug analytes. The efficiency of transferring analytes from the sampling capillary into a vial was optimised in this work. The analysis was carried out using standard flow liquid chromatography coupled to widely available mass spectrometry instrumentation, highlighting opportunities for widespread adoption. The method was applied to 30 living cells, revealing cell-to-cell heterogeneity in the uptake of different drug molecules. Using this system, we detected 14–158 lipid features per single cell, revealing the association between bedaquiline uptake and lipid fingerprints. The Royal Society of Chemistry 2023-01-27 /pmc/articles/PMC9969958/ /pubmed/36723178 http://dx.doi.org/10.1039/d2an01732f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Lewis, Holly-May
Gupta, Priyanka
Saunders, Kyle D. G.
Briones, Shazneil
von Gerichten, Johanna
Townsend, Paul A.
Velliou, Eirini
Beste, Dany J. V.
Cexus, Olivier
Webb, Roger
Bailey, Melanie J.
Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
title Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
title_full Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
title_fullStr Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
title_full_unstemmed Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
title_short Nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
title_sort nanocapillary sampling coupled to liquid chromatography mass spectrometry delivers single cell drug measurement and lipid fingerprints
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9969958/
https://www.ncbi.nlm.nih.gov/pubmed/36723178
http://dx.doi.org/10.1039/d2an01732f
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