Visual barcodes for clonal-multiplexing of live microscopy-based assays

Multiplex analyses of samples allow understanding complex processes in cancer initiation, progression and therapy response. Here, the authors present a fluorescence imaging-based visual barcode for livecell clonal-multiplexing which allows identifying signalling pathways clusters in response to diff...

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Main Authors: Tom Kaufman, Erez Nitzan, Nir Firestein, Miriam Bracha Ginzberg, Seshu Iyengar, Nish Patel, Rotem Ben-Hamo, Ziv Porat, Jaryd Hunter, Andreas Hilfinger, Varda Rotter, Ran Kafri, Ravid Straussman
Format: Article
Language:English
Published: Nature Portfolio 2022-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-30008-0
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author Tom Kaufman
Erez Nitzan
Nir Firestein
Miriam Bracha Ginzberg
Seshu Iyengar
Nish Patel
Rotem Ben-Hamo
Ziv Porat
Jaryd Hunter
Andreas Hilfinger
Varda Rotter
Ran Kafri
Ravid Straussman
author_facet Tom Kaufman
Erez Nitzan
Nir Firestein
Miriam Bracha Ginzberg
Seshu Iyengar
Nish Patel
Rotem Ben-Hamo
Ziv Porat
Jaryd Hunter
Andreas Hilfinger
Varda Rotter
Ran Kafri
Ravid Straussman
author_sort Tom Kaufman
collection DOAJ
description Multiplex analyses of samples allow understanding complex processes in cancer initiation, progression and therapy response. Here, the authors present a fluorescence imaging-based visual barcode for livecell clonal-multiplexing which allows identifying signalling pathways clusters in response to different chemotherapy compounds.
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spelling doaj.art-41dba124b5ec489ea70767c6b7eafc682022-12-22T02:34:20ZengNature PortfolioNature Communications2041-17232022-05-0113111710.1038/s41467-022-30008-0Visual barcodes for clonal-multiplexing of live microscopy-based assaysTom Kaufman0Erez Nitzan1Nir Firestein2Miriam Bracha Ginzberg3Seshu Iyengar4Nish Patel5Rotem Ben-Hamo6Ziv Porat7Jaryd Hunter8Andreas Hilfinger9Varda Rotter10Ran Kafri11Ravid Straussman12Department of Molecular Cell Biology, Weizmann Institute of ScienceDepartment of Molecular Cell Biology, Weizmann Institute of ScienceDepartment of Molecular Cell Biology, Weizmann Institute of ScienceProgramme in Cell Biology, The Hospital for Sick ChildrenDepartment of Chemical and Physical Sciences, University of TorontoProgramme in Cell Biology, The Hospital for Sick ChildrenDepartment of Molecular Cell Biology, Weizmann Institute of ScienceFlow Cytometry Unit, Life Sciences Core Facilities, Weizmann Institute of ScienceProgramme in Cell Biology, The Hospital for Sick ChildrenDepartment of Chemical and Physical Sciences, University of TorontoDepartment of Molecular Cell Biology, Weizmann Institute of ScienceProgramme in Cell Biology, The Hospital for Sick ChildrenDepartment of Molecular Cell Biology, Weizmann Institute of ScienceMultiplex analyses of samples allow understanding complex processes in cancer initiation, progression and therapy response. Here, the authors present a fluorescence imaging-based visual barcode for livecell clonal-multiplexing which allows identifying signalling pathways clusters in response to different chemotherapy compounds.https://doi.org/10.1038/s41467-022-30008-0
spellingShingle Tom Kaufman
Erez Nitzan
Nir Firestein
Miriam Bracha Ginzberg
Seshu Iyengar
Nish Patel
Rotem Ben-Hamo
Ziv Porat
Jaryd Hunter
Andreas Hilfinger
Varda Rotter
Ran Kafri
Ravid Straussman
Visual barcodes for clonal-multiplexing of live microscopy-based assays
Nature Communications
title Visual barcodes for clonal-multiplexing of live microscopy-based assays
title_full Visual barcodes for clonal-multiplexing of live microscopy-based assays
title_fullStr Visual barcodes for clonal-multiplexing of live microscopy-based assays
title_full_unstemmed Visual barcodes for clonal-multiplexing of live microscopy-based assays
title_short Visual barcodes for clonal-multiplexing of live microscopy-based assays
title_sort visual barcodes for clonal multiplexing of live microscopy based assays
url https://doi.org/10.1038/s41467-022-30008-0
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