Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop

It is currently difficult to perform accurate single-cell assays in 384-well plates. Here the authors report Dye Drop which uses sequential density displacement and microscopy for multi-step assays on cells, and use this to collect single-cell dose-response data for small molecules in breast cancer...

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Main Authors: Caitlin E. Mills, Kartik Subramanian, Marc Hafner, Mario Niepel, Luca Gerosa, Mirra Chung, Chiara Victor, Benjamin Gaudio, Clarence Yapp, Ajit J. Nirmal, Nicholas Clark, Peter K. Sorger
Format: Article
Language:English
Published: Nature Portfolio 2022-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-34536-7
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author Caitlin E. Mills
Kartik Subramanian
Marc Hafner
Mario Niepel
Luca Gerosa
Mirra Chung
Chiara Victor
Benjamin Gaudio
Clarence Yapp
Ajit J. Nirmal
Nicholas Clark
Peter K. Sorger
author_facet Caitlin E. Mills
Kartik Subramanian
Marc Hafner
Mario Niepel
Luca Gerosa
Mirra Chung
Chiara Victor
Benjamin Gaudio
Clarence Yapp
Ajit J. Nirmal
Nicholas Clark
Peter K. Sorger
author_sort Caitlin E. Mills
collection DOAJ
description It is currently difficult to perform accurate single-cell assays in 384-well plates. Here the authors report Dye Drop which uses sequential density displacement and microscopy for multi-step assays on cells, and use this to collect single-cell dose-response data for small molecules in breast cancer cells.
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spelling doaj.art-fd5702d7273c4618abdb7be6d446e8fd2022-12-22T04:15:08ZengNature PortfolioNature Communications2041-17232022-11-0113111810.1038/s41467-022-34536-7Multiplexed and reproducible high content screening of live and fixed cells using Dye DropCaitlin E. Mills0Kartik Subramanian1Marc Hafner2Mario Niepel3Luca Gerosa4Mirra Chung5Chiara Victor6Benjamin Gaudio7Clarence Yapp8Ajit J. Nirmal9Nicholas Clark10Peter K. Sorger11Laboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolLaboratory of Systems Pharmacology, Department of Systems Biology, Harvard Medical SchoolIt is currently difficult to perform accurate single-cell assays in 384-well plates. Here the authors report Dye Drop which uses sequential density displacement and microscopy for multi-step assays on cells, and use this to collect single-cell dose-response data for small molecules in breast cancer cells.https://doi.org/10.1038/s41467-022-34536-7
spellingShingle Caitlin E. Mills
Kartik Subramanian
Marc Hafner
Mario Niepel
Luca Gerosa
Mirra Chung
Chiara Victor
Benjamin Gaudio
Clarence Yapp
Ajit J. Nirmal
Nicholas Clark
Peter K. Sorger
Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop
Nature Communications
title Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop
title_full Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop
title_fullStr Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop
title_full_unstemmed Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop
title_short Multiplexed and reproducible high content screening of live and fixed cells using Dye Drop
title_sort multiplexed and reproducible high content screening of live and fixed cells using dye drop
url https://doi.org/10.1038/s41467-022-34536-7
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