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A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing

Unexpected adverse effects on the cardiovascular system remain a major challenge in the development of novel active pharmaceutical ingredients (API). To overcome the current limitations of animal-based in vitro and in vivo test systems, stem cell derived human cardiomyocyte clusters (hCMC) offer the...

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Autores principales: Jahnke, Heinz-Georg, Steel, Daniella, Fleischer, Stephan, Seidel, Diana, Kurz, Randy, Vinz, Silvia, Dahlenborg, Kerstin, Sartipy, Peter, Robitzki, Andrea A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3704625/
https://www.ncbi.nlm.nih.gov/pubmed/23861955
http://dx.doi.org/10.1371/journal.pone.0068971
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author Jahnke, Heinz-Georg
Steel, Daniella
Fleischer, Stephan
Seidel, Diana
Kurz, Randy
Vinz, Silvia
Dahlenborg, Kerstin
Sartipy, Peter
Robitzki, Andrea A.
author_facet Jahnke, Heinz-Georg
Steel, Daniella
Fleischer, Stephan
Seidel, Diana
Kurz, Randy
Vinz, Silvia
Dahlenborg, Kerstin
Sartipy, Peter
Robitzki, Andrea A.
author_sort Jahnke, Heinz-Georg
collection PubMed
description Unexpected adverse effects on the cardiovascular system remain a major challenge in the development of novel active pharmaceutical ingredients (API). To overcome the current limitations of animal-based in vitro and in vivo test systems, stem cell derived human cardiomyocyte clusters (hCMC) offer the opportunity for highly predictable pre-clinical testing. The three-dimensional structure of hCMC appears more representative of tissue milieu than traditional monolayer cell culture. However, there is a lack of long-term, real time monitoring systems for tissue-like cardiac material. To address this issue, we have developed a microcavity array (MCA)-based label-free monitoring system that eliminates the need for critical hCMC adhesion and outgrowth steps. In contrast, feasible field potential derived action potential recording is possible immediately after positioning within the microcavity. Moreover, this approach allows extended observation of adverse effects on hCMC. For the first time, we describe herein the monitoring of hCMC over 35 days while preserving the hCMC structure and electrophysiological characteristics. Furthermore, we demonstrated the sensitive detection and quantification of adverse API effects using E4031, doxorubicin, and noradrenaline directly on unaltered 3D cultures. The MCA system provides multi-parameter analysis capabilities incorporating field potential recording, impedance spectroscopy, and optical read-outs on individual clusters giving a comprehensive insight into induced cellular alterations within a complex cardiac culture over days or even weeks.
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spelling pubmed-37046252013-07-16 A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing Jahnke, Heinz-Georg Steel, Daniella Fleischer, Stephan Seidel, Diana Kurz, Randy Vinz, Silvia Dahlenborg, Kerstin Sartipy, Peter Robitzki, Andrea A. PLoS One Research Article Unexpected adverse effects on the cardiovascular system remain a major challenge in the development of novel active pharmaceutical ingredients (API). To overcome the current limitations of animal-based in vitro and in vivo test systems, stem cell derived human cardiomyocyte clusters (hCMC) offer the opportunity for highly predictable pre-clinical testing. The three-dimensional structure of hCMC appears more representative of tissue milieu than traditional monolayer cell culture. However, there is a lack of long-term, real time monitoring systems for tissue-like cardiac material. To address this issue, we have developed a microcavity array (MCA)-based label-free monitoring system that eliminates the need for critical hCMC adhesion and outgrowth steps. In contrast, feasible field potential derived action potential recording is possible immediately after positioning within the microcavity. Moreover, this approach allows extended observation of adverse effects on hCMC. For the first time, we describe herein the monitoring of hCMC over 35 days while preserving the hCMC structure and electrophysiological characteristics. Furthermore, we demonstrated the sensitive detection and quantification of adverse API effects using E4031, doxorubicin, and noradrenaline directly on unaltered 3D cultures. The MCA system provides multi-parameter analysis capabilities incorporating field potential recording, impedance spectroscopy, and optical read-outs on individual clusters giving a comprehensive insight into induced cellular alterations within a complex cardiac culture over days or even weeks. Public Library of Science 2013-07-08 /pmc/articles/PMC3704625/ /pubmed/23861955 http://dx.doi.org/10.1371/journal.pone.0068971 Text en © 2013 Jahnke et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Jahnke, Heinz-Georg
Steel, Daniella
Fleischer, Stephan
Seidel, Diana
Kurz, Randy
Vinz, Silvia
Dahlenborg, Kerstin
Sartipy, Peter
Robitzki, Andrea A.
A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing
title A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing
title_full A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing
title_fullStr A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing
title_full_unstemmed A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing
title_short A Novel 3D Label-Free Monitoring System of hES-Derived Cardiomyocyte Clusters: A Step Forward to In Vitro Cardiotoxicity Testing
title_sort novel 3d label-free monitoring system of hes-derived cardiomyocyte clusters: a step forward to in vitro cardiotoxicity testing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3704625/
https://www.ncbi.nlm.nih.gov/pubmed/23861955
http://dx.doi.org/10.1371/journal.pone.0068971
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