Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses

Alave-Furrer et al adapted their recently-developed 3D bioprinting platform to allow microvalve-based drop-on-demand printing of cell-laden Matrigel containing primary human muscle precursor cells. Their bioprinting platform recapitulated aspects of exercise and pharmacological responses and thus co...

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Main Authors: Angela Alave Reyes-Furrer, Sonia De Andrade, Dominic Bachmann, Heidi Jeker, Martin Steinmann, Nathalie Accart, Andrew Dunbar, Martin Rausch, Epifania Bono, Markus Rimann, Hansjoerg Keller
Format: Article
Language:English
Published: Nature Portfolio 2021-10-01
Series:Communications Biology
Online Access:https://doi.org/10.1038/s42003-021-02691-0
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author Angela Alave Reyes-Furrer
Sonia De Andrade
Dominic Bachmann
Heidi Jeker
Martin Steinmann
Nathalie Accart
Andrew Dunbar
Martin Rausch
Epifania Bono
Markus Rimann
Hansjoerg Keller
author_facet Angela Alave Reyes-Furrer
Sonia De Andrade
Dominic Bachmann
Heidi Jeker
Martin Steinmann
Nathalie Accart
Andrew Dunbar
Martin Rausch
Epifania Bono
Markus Rimann
Hansjoerg Keller
author_sort Angela Alave Reyes-Furrer
collection DOAJ
description Alave-Furrer et al adapted their recently-developed 3D bioprinting platform to allow microvalve-based drop-on-demand printing of cell-laden Matrigel containing primary human muscle precursor cells. Their bioprinting platform recapitulated aspects of exercise and pharmacological responses and thus could aid the engineering of more complex 3D microphysiological systems.
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spelling doaj.art-3e8c0388474b4dcdac2c6f21af3426d52022-12-21T18:23:44ZengNature PortfolioCommunications Biology2399-36422021-10-014111210.1038/s42003-021-02691-0Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responsesAngela Alave Reyes-Furrer0Sonia De Andrade1Dominic Bachmann2Heidi Jeker3Martin Steinmann4Nathalie Accart5Andrew Dunbar6Martin Rausch7Epifania Bono8Markus Rimann9Hansjoerg Keller10Musculoskeletal Disease Area, Novartis Institutes for BioMedical ResearchMusculoskeletal Disease Area, Novartis Institutes for BioMedical ResearchMusculoskeletal Disease Area, Novartis Institutes for BioMedical ResearchMusculoskeletal Disease Area, Novartis Institutes for BioMedical ResearchAnalytical Sciences & Imaging, Novartis Institutes for BioMedical ResearchMusculoskeletal Disease Area, Novartis Institutes for BioMedical ResearchAnalytical Sciences & Imaging, Novartis Institutes for BioMedical ResearchAnalytical Sciences & Imaging, Novartis Institutes for BioMedical Research3D Tissues and Biofabrication, Institute of Chemistry and Biotechnology (ICBT), Zurich University of Applied Sciences3D Tissues and Biofabrication, Institute of Chemistry and Biotechnology (ICBT), Zurich University of Applied SciencesMusculoskeletal Disease Area, Novartis Institutes for BioMedical ResearchAlave-Furrer et al adapted their recently-developed 3D bioprinting platform to allow microvalve-based drop-on-demand printing of cell-laden Matrigel containing primary human muscle precursor cells. Their bioprinting platform recapitulated aspects of exercise and pharmacological responses and thus could aid the engineering of more complex 3D microphysiological systems.https://doi.org/10.1038/s42003-021-02691-0
spellingShingle Angela Alave Reyes-Furrer
Sonia De Andrade
Dominic Bachmann
Heidi Jeker
Martin Steinmann
Nathalie Accart
Andrew Dunbar
Martin Rausch
Epifania Bono
Markus Rimann
Hansjoerg Keller
Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
Communications Biology
title Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
title_full Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
title_fullStr Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
title_full_unstemmed Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
title_short Matrigel 3D bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
title_sort matrigel 3d bioprinting of contractile human skeletal muscle models recapitulating exercise and pharmacological responses
url https://doi.org/10.1038/s42003-021-02691-0
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