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Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei

Apoptosis-like programmed cell death (A-PCD) is a universal process common to all types of eukaryotic organisms. Because A-PCD-associated processes are conserved, it is possible to define A-PCD by a standard set of markers. Many of the popular methods to measure A-PCD make use of fluorescent ligands...

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Autores principales: Shlezinger, Neta, Eizner, Elad, Dubinchik, Stas, Minz-Dub, Anna, Tetroashvili, Rachel, Reider, Adi, Sharon, Amir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shared Science Publishers OG 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5349136/
https://www.ncbi.nlm.nih.gov/pubmed/28357220
http://dx.doi.org/10.15698/mic2014.12.180
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author Shlezinger, Neta
Eizner, Elad
Dubinchik, Stas
Minz-Dub, Anna
Tetroashvili, Rachel
Reider, Adi
Sharon, Amir
author_facet Shlezinger, Neta
Eizner, Elad
Dubinchik, Stas
Minz-Dub, Anna
Tetroashvili, Rachel
Reider, Adi
Sharon, Amir
author_sort Shlezinger, Neta
collection PubMed
description Apoptosis-like programmed cell death (A-PCD) is a universal process common to all types of eukaryotic organisms. Because A-PCD-associated processes are conserved, it is possible to define A-PCD by a standard set of markers. Many of the popular methods to measure A-PCD make use of fluorescent ligands that change in intensity or cellular localization during A-PCD. In single cell organisms, it is possible to quantify levels of A-PCD by scoring the number of apoptotic cells using flow cytometry instruments. In a multicellular organism, quantification of A-PCD is more problematic due to the complex nature of the tissue. The situation is further complicated in filamentous fungi, in which nuclei are divided between compartments, each containing a number of nuclei, which can also migrate between the compartments. We developed SCAN(©), a System for Counting and Analysis of Nuclei, and used it to measure A-PCD according to two markers - chromatin condensation and DNA strand breaks. The package includes three modules designed for counting the number of nuclei in multi-nucleated domains, scoring the relative number of nuclei with condensed chromatin, and calculating the relative number of nuclei with DNA strand breaks. The method provides equal or better results compared with manual counting, the analysis is fast and can be applied on large data sets. While we demonstrated the utility of the software for measurement of A-PCD in fungi, the method is readily adopted for measurement of A-PCD in other types of multicellular specimens.
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spelling pubmed-53491362017-03-29 Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei Shlezinger, Neta Eizner, Elad Dubinchik, Stas Minz-Dub, Anna Tetroashvili, Rachel Reider, Adi Sharon, Amir Microb Cell Microbiology Apoptosis-like programmed cell death (A-PCD) is a universal process common to all types of eukaryotic organisms. Because A-PCD-associated processes are conserved, it is possible to define A-PCD by a standard set of markers. Many of the popular methods to measure A-PCD make use of fluorescent ligands that change in intensity or cellular localization during A-PCD. In single cell organisms, it is possible to quantify levels of A-PCD by scoring the number of apoptotic cells using flow cytometry instruments. In a multicellular organism, quantification of A-PCD is more problematic due to the complex nature of the tissue. The situation is further complicated in filamentous fungi, in which nuclei are divided between compartments, each containing a number of nuclei, which can also migrate between the compartments. We developed SCAN(©), a System for Counting and Analysis of Nuclei, and used it to measure A-PCD according to two markers - chromatin condensation and DNA strand breaks. The package includes three modules designed for counting the number of nuclei in multi-nucleated domains, scoring the relative number of nuclei with condensed chromatin, and calculating the relative number of nuclei with DNA strand breaks. The method provides equal or better results compared with manual counting, the analysis is fast and can be applied on large data sets. While we demonstrated the utility of the software for measurement of A-PCD in fungi, the method is readily adopted for measurement of A-PCD in other types of multicellular specimens. Shared Science Publishers OG 2014-11-26 /pmc/articles/PMC5349136/ /pubmed/28357220 http://dx.doi.org/10.15698/mic2014.12.180 Text en https://creativecommons.org/licenses/by/4.0/ This is an open-access article released under the terms of the Creative Commons Attribution (CC BY) license, which allows the unrestricted use, distribution, and reproduction in any medium, provided the original author and source are acknowledged.
spellingShingle Microbiology
Shlezinger, Neta
Eizner, Elad
Dubinchik, Stas
Minz-Dub, Anna
Tetroashvili, Rachel
Reider, Adi
Sharon, Amir
Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei
title Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei
title_full Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei
title_fullStr Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei
title_full_unstemmed Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei
title_short Measurement of apoptosis by SCAN(©), a system for counting and analysis of fluorescently labelled nuclei
title_sort measurement of apoptosis by scan(©), a system for counting and analysis of fluorescently labelled nuclei
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5349136/
https://www.ncbi.nlm.nih.gov/pubmed/28357220
http://dx.doi.org/10.15698/mic2014.12.180
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