Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.

The microplate assay with Chinese Hamster Ovary (CHO) cells is currently used as a safety test to monitor the residual pertussis toxin (PT) amount in acellular pertussis antigens prior to vaccine formulation. The assay is based on the findings that the exposure of CHO cells to PT results in a concen...

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Main Authors: Lidice Bernardo, Lucas Corallo, Judy Caterini, Jin Su, Lucy Gisonni-Lex, Beata Gajewska
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0248491&type=printable
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author Lidice Bernardo
Lucas Corallo
Judy Caterini
Jin Su
Lucy Gisonni-Lex
Beata Gajewska
author_facet Lidice Bernardo
Lucas Corallo
Judy Caterini
Jin Su
Lucy Gisonni-Lex
Beata Gajewska
author_sort Lidice Bernardo
collection DOAJ
description The microplate assay with Chinese Hamster Ovary (CHO) cells is currently used as a safety test to monitor the residual pertussis toxin (PT) amount in acellular pertussis antigens prior to vaccine formulation. The assay is based on the findings that the exposure of CHO cells to PT results in a concentration-dependent clustering response which can be used to estimate the amount of PT in a sample preparation. A major challenge with the current CHO cell assay methodology is that scoring of PT-induced clustering is dependent on subjective operator visual assessment using light microscopy. In this work, we have explored the feasibility of replacing the microscopy readout for the CHO cell assay with the xCELLigence Real-Time Cell Analysis system (ACEA BioSciences, a part of Agilent). The xCELLigence equipment is designed to monitor cell adhesion and growth. The electrical impedance generated from cell attachment and proliferation is quantified via gold electrodes at the bottom of the cell culture plate wells, which is then translated into a unitless readout called cell index. Results showed significant decrease in the cell index readouts of CHO cells exposed to PT compared to the cell index of unexposed CHO cells. Similar endpoint concentrations were obtained when the PT reference standard was titrated with either xCELLigence or microscopy. Testing genetically detoxified pertussis samples unspiked or spiked with PT further supported the sensitivity and reproducibility of the xCELLigence assay in comparison with the conventional microscopy assay. In conclusion, the xCELLigence RTCA system offers an alternative automated and higher throughput method for evaluating PT-induced clustering in CHO cells.
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spelling doaj-art-888f3f34005e425db7dc5815466a9e7f2025-08-20T02:54:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01163e024849110.1371/journal.pone.0248491Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.Lidice BernardoLucas CoralloJudy CateriniJin SuLucy Gisonni-LexBeata GajewskaThe microplate assay with Chinese Hamster Ovary (CHO) cells is currently used as a safety test to monitor the residual pertussis toxin (PT) amount in acellular pertussis antigens prior to vaccine formulation. The assay is based on the findings that the exposure of CHO cells to PT results in a concentration-dependent clustering response which can be used to estimate the amount of PT in a sample preparation. A major challenge with the current CHO cell assay methodology is that scoring of PT-induced clustering is dependent on subjective operator visual assessment using light microscopy. In this work, we have explored the feasibility of replacing the microscopy readout for the CHO cell assay with the xCELLigence Real-Time Cell Analysis system (ACEA BioSciences, a part of Agilent). The xCELLigence equipment is designed to monitor cell adhesion and growth. The electrical impedance generated from cell attachment and proliferation is quantified via gold electrodes at the bottom of the cell culture plate wells, which is then translated into a unitless readout called cell index. Results showed significant decrease in the cell index readouts of CHO cells exposed to PT compared to the cell index of unexposed CHO cells. Similar endpoint concentrations were obtained when the PT reference standard was titrated with either xCELLigence or microscopy. Testing genetically detoxified pertussis samples unspiked or spiked with PT further supported the sensitivity and reproducibility of the xCELLigence assay in comparison with the conventional microscopy assay. In conclusion, the xCELLigence RTCA system offers an alternative automated and higher throughput method for evaluating PT-induced clustering in CHO cells.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0248491&type=printable
spellingShingle Lidice Bernardo
Lucas Corallo
Judy Caterini
Jin Su
Lucy Gisonni-Lex
Beata Gajewska
Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.
PLoS ONE
title Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.
title_full Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.
title_fullStr Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.
title_full_unstemmed Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.
title_short Application of xCELLigence real-time cell analysis to the microplate assay for pertussis toxin induced clustering in CHO cells.
title_sort application of xcelligence real time cell analysis to the microplate assay for pertussis toxin induced clustering in cho cells
url https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0248491&type=printable
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