Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry

Abstract Mass cytometry presents an exceptional opportunity to interrogate the biology of highly heterogeneous cell populations, owing to the ability to collect highly parametric proteomic data at a single cell level. However, sample-to-sample variability, due to antibody staining and/or instrument...

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Autores principales: Ryan L. McCarthy, Duncan H. Mak, Jared K. Burks, Michelle C. Barton
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/3189a0ba7a0641888ff626cfe63e61ed
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spelling oai:doaj.org-article:3189a0ba7a0641888ff626cfe63e61ed2021-12-02T16:06:26ZRapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry10.1038/s41598-017-03610-22045-2322https://doaj.org/article/3189a0ba7a0641888ff626cfe63e61ed2017-06-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-03610-2https://doaj.org/toc/2045-2322Abstract Mass cytometry presents an exceptional opportunity to interrogate the biology of highly heterogeneous cell populations, owing to the ability to collect highly parametric proteomic data at a single cell level. However, sample-to-sample variability, due to antibody staining and/or instrument sensitivity, can introduce substantial artifacts into the data, which can in turn lead to erroneous conclusions. This variability can be eliminated by sample barcoding which enables samples to be pooled, stained and run simultaneously. Existing mass cytometry barcoding approaches require time intensive labeling, reduce the number of biologically meaningful parameters and/or rely on expensive reagents. We present an approach utilizing monoisotopic cisplatin to perform cell barcoding that does not require cell permeabilization, can be completed in 10 minutes and can be utilized in combination with existing barcoding techniques to greatly increase the number of samples which can be multiplexed to improve throughput and consistency.Ryan L. McCarthyDuncan H. MakJared K. BurksMichelle C. BartonNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-6 (2017)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Ryan L. McCarthy
Duncan H. Mak
Jared K. Burks
Michelle C. Barton
Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
description Abstract Mass cytometry presents an exceptional opportunity to interrogate the biology of highly heterogeneous cell populations, owing to the ability to collect highly parametric proteomic data at a single cell level. However, sample-to-sample variability, due to antibody staining and/or instrument sensitivity, can introduce substantial artifacts into the data, which can in turn lead to erroneous conclusions. This variability can be eliminated by sample barcoding which enables samples to be pooled, stained and run simultaneously. Existing mass cytometry barcoding approaches require time intensive labeling, reduce the number of biologically meaningful parameters and/or rely on expensive reagents. We present an approach utilizing monoisotopic cisplatin to perform cell barcoding that does not require cell permeabilization, can be completed in 10 minutes and can be utilized in combination with existing barcoding techniques to greatly increase the number of samples which can be multiplexed to improve throughput and consistency.
format article
author Ryan L. McCarthy
Duncan H. Mak
Jared K. Burks
Michelle C. Barton
author_facet Ryan L. McCarthy
Duncan H. Mak
Jared K. Burks
Michelle C. Barton
author_sort Ryan L. McCarthy
title Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
title_short Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
title_full Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
title_fullStr Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
title_full_unstemmed Rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
title_sort rapid monoisotopic cisplatin based barcoding for multiplexed mass cytometry
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/3189a0ba7a0641888ff626cfe63e61ed
work_keys_str_mv AT ryanlmccarthy rapidmonoisotopiccisplatinbasedbarcodingformultiplexedmasscytometry
AT duncanhmak rapidmonoisotopiccisplatinbasedbarcodingformultiplexedmasscytometry
AT jaredkburks rapidmonoisotopiccisplatinbasedbarcodingformultiplexedmasscytometry
AT michellecbarton rapidmonoisotopiccisplatinbasedbarcodingformultiplexedmasscytometry
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