Literature DB >> 26476764

Differential responses of induced pluripotent stem cell-derived cardiomyocytes to anisotropic strain depends on disease status.

Young Wook Chun1, David E Voyles2, Rutwik Rath2, Lucas H Hofmeister2, Timothy C Boire2, Henry Wilcox3, Jae Han Lee2, Leon M Bellan4, Charles C Hong5, Hak-Joon Sung6.   

Abstract

Primary dilated cardiomyopathy (DCM) is a non-ischemic heart disease with impaired pumping function of the heart. In this study, we used human induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) from a healthy volunteer and a primary DCM patient to investigate the impact of DCM on iPSC-CMs׳ responses to different types of anisotropic strain. A bioreactor system was established that generates cardiac-mimetic forces of 150 kPa at 5% anisotropic cyclic strain and 1 Hz frequency. After confirming cardiac induction of the iPSCs, it was determined that fibronectin was favorable to other extracellular matrix protein coatings (gelatin, laminin, vitronectin) in terms of viable cell area and density, and was therefore selected as the coating for further study. When iPSC-CMs were exposed to three strain conditions (no strain, 5% static strain, and 5% cyclic strain), the static strain elicited significant induction of sarcomere components in comparison to other strain conditions. However, this induction occurred only in iPSC-CMs from a healthy volunteer ("control iPSC-CMs"), not in iPSC-CMs from the DCM patient ("DCM iPSC-CMs"). The donor type also significantly influenced gene expressions of cell-cell and cell-matrix interaction markers in response to the strain conditions. Gene expression of connexin-43 (cell-cell interaction) had a higher fold change in healthy versus diseased iPSC-CMs under static and cyclic strain, as opposed to integrins α-5 and α-10 (cell-matrix interaction). In summary, our iPSC-CM-based study to model the effects of different strain conditions suggests that intrinsic, genetic-based differences in the cardiomyocyte responses to strain may influence disease manifestation in vivo.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Anisotropic strain; Cardiac maturation; Cell–cell interaction; Dilated cardiomyopathy; IPSC

Mesh:

Substances:

Year:  2015        PMID: 26476764      PMCID: PMC4655132          DOI: 10.1016/j.jbiomech.2015.09.028

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  44 in total

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Authors:  Valerie F Shimko; William C Claycomb
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6.  Attachment of adult rat cardiomyocytes (ARC) on laminin and two laminin fragments.

Authors:  S Koch-Schneidemann; P Gehr; B Rutishauser; H M Eppenberger
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7.  Patient-specific induced pluripotent stem cells as a model for familial dilated cardiomyopathy.

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10.  Induced pluripotent stem cell-derived cardiac progenitors differentiate to cardiomyocytes and form biosynthetic tissues.

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Review 2.  Engineering hiPSC cardiomyocyte in vitro model systems for functional and structural assessment.

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Review 3.  The march of pluripotent stem cells in cardiovascular regenerative medicine.

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4.  A magnetics-based approach for fine-tuning afterload in engineered heart tissues.

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