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Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening

Real-time continuous monitoring of cellular processes offers distinct advantages over traditional endpoint assays. A comprehensive representation of the changes occurring in live cells over the entire length of an experiment provides information about the biological status of the cell and informs de...

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Autores principales: Duellman, Sarah J., Zhou, Wenhui, Meisenheimer, Poncho, Vidugiris, Gediminas, Cali, James J., Gautam, Prson, Wennerberg, Krister, Vidugiriene, Jolanta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4605357/
https://www.ncbi.nlm.nih.gov/pubmed/26383544
http://dx.doi.org/10.1089/adt.2015.669
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author Duellman, Sarah J.
Zhou, Wenhui
Meisenheimer, Poncho
Vidugiris, Gediminas
Cali, James J.
Gautam, Prson
Wennerberg, Krister
Vidugiriene, Jolanta
author_facet Duellman, Sarah J.
Zhou, Wenhui
Meisenheimer, Poncho
Vidugiris, Gediminas
Cali, James J.
Gautam, Prson
Wennerberg, Krister
Vidugiriene, Jolanta
author_sort Duellman, Sarah J.
collection PubMed
description Real-time continuous monitoring of cellular processes offers distinct advantages over traditional endpoint assays. A comprehensive representation of the changes occurring in live cells over the entire length of an experiment provides information about the biological status of the cell and informs decisions about the timing of treatments or the use of other functional endpoint assays. We describe a homogeneous, nonlytic, bioluminescent assay that measures cell viability in real time. This time-dependent measurement allowed us to monitor cell health for 72 h from the same test samples, distinguish differential cell growth, and investigate drug mechanism of action by analyzing time- and dose-dependent drug effects. The real-time measurements also allowed us to detect cell death immediately (>75% signal decrease within 15 min of digitonin addition), analyze drug potency versus efficacy, and identify cytostatic versus toxic drug effects. We screened an oncology compound library (Z′ = 0.7) and identified compounds with varying activity at different time points (1.6% of the library showed activity within 3 h, whereas 35.4% showed a response by 47 h). The assay compared well with orthogonal endpoint cell viability assays and additionally provided data at multiple time points and the opportunity to multiplex assays on the same cells. To test the advantage of time-dependent measurements to direct optimal timing of downstream applications, we used the real-time cell viability assay to determine the ideal time to measure caspase activity by monitoring the onset of cell death and multiplexing a luminescent caspase activation assay on the same test samples.
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spelling pubmed-46053572015-10-20 Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening Duellman, Sarah J. Zhou, Wenhui Meisenheimer, Poncho Vidugiris, Gediminas Cali, James J. Gautam, Prson Wennerberg, Krister Vidugiriene, Jolanta Assay Drug Dev Technol Original Articles Real-time continuous monitoring of cellular processes offers distinct advantages over traditional endpoint assays. A comprehensive representation of the changes occurring in live cells over the entire length of an experiment provides information about the biological status of the cell and informs decisions about the timing of treatments or the use of other functional endpoint assays. We describe a homogeneous, nonlytic, bioluminescent assay that measures cell viability in real time. This time-dependent measurement allowed us to monitor cell health for 72 h from the same test samples, distinguish differential cell growth, and investigate drug mechanism of action by analyzing time- and dose-dependent drug effects. The real-time measurements also allowed us to detect cell death immediately (>75% signal decrease within 15 min of digitonin addition), analyze drug potency versus efficacy, and identify cytostatic versus toxic drug effects. We screened an oncology compound library (Z′ = 0.7) and identified compounds with varying activity at different time points (1.6% of the library showed activity within 3 h, whereas 35.4% showed a response by 47 h). The assay compared well with orthogonal endpoint cell viability assays and additionally provided data at multiple time points and the opportunity to multiplex assays on the same cells. To test the advantage of time-dependent measurements to direct optimal timing of downstream applications, we used the real-time cell viability assay to determine the ideal time to measure caspase activity by monitoring the onset of cell death and multiplexing a luminescent caspase activation assay on the same test samples. Mary Ann Liebert, Inc. 2015-10-01 /pmc/articles/PMC4605357/ /pubmed/26383544 http://dx.doi.org/10.1089/adt.2015.669 Text en © Duellman et al. 2015; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited.
spellingShingle Original Articles
Duellman, Sarah J.
Zhou, Wenhui
Meisenheimer, Poncho
Vidugiris, Gediminas
Cali, James J.
Gautam, Prson
Wennerberg, Krister
Vidugiriene, Jolanta
Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening
title Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening
title_full Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening
title_fullStr Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening
title_full_unstemmed Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening
title_short Bioluminescent, Nonlytic, Real-Time Cell Viability Assay and Use in Inhibitor Screening
title_sort bioluminescent, nonlytic, real-time cell viability assay and use in inhibitor screening
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4605357/
https://www.ncbi.nlm.nih.gov/pubmed/26383544
http://dx.doi.org/10.1089/adt.2015.669
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