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Multifocal optical projection microscopy enables label-free 3D measurement of cardiomyocyte cluster contractility

    Research output: Contribution to journalArticleScientificpeer-review

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    Abstract

    Human induced pluripotent stem cell (hiPSC)-derived cardiomyocyte (CM) models have become an attractive tool for in vitro cardiac disease modeling and drug studies. These models are moving towards more complex three-dimensional microphysiological organ-on-chip systems. Label-free imaging-based techniques capable of quantifying contractility in 3D are needed, as traditional two-dimensional methods are ill-suited for 3D applications. Here, we developed multifocal (MF) optical projection microscopy (OPM) by integrating an electrically tunable lens to our in-house built optical projection tomography setup for extended depth of field brightfield imaging in CM clusters. We quantified cluster biomechanics by implementing our previously developed optical flow-based CM video analysis for MF-OPM. To demonstrate, we acquired and analyzed multiangle and multifocal projection videos of beating hiPSC-CM clusters in 3D hydrogel. We further quantified cluster contractility response to temperature and adrenaline and observed changes to beating rate and relaxation. Challenges emerge from light penetration and overlaying textures in larger clusters. However, our findings indicate that MF-OPM is suitable for contractility studies of 3D clusters. Thus, for the first time, MF-OPM is used in CM studies and hiPSC-CM 3D cluster contraction is quantified in multiple orientations and imaging planes.

    Original languageEnglish
    Article number19788
    JournalScientific Reports
    Volume13
    Issue number1
    DOIs
    Publication statusPublished - Nov 2023
    Publication typeA1 Journal article-refereed

    Funding

    We wish to acknowledge Tampere University Heart Group, Finland, for providing the differentiated cardiomyocyte clusters. This study was funded by the Academy of Finland funded project (EPIPHYS 3121326400); Academy of Finland funded Center of Excellence on Body-on-Chip research (312410 and 353178); Nuffic-funded NICHE-project (NICHE/ETH/246) by CINOP Global, Tampere University, and Addis Ababa University; Finnish Cultural Foundation Pirkanmaa fund; and Finnish Foundation for Cardiovascular Research.

    FundersFunder number
    Finnish Cultural Foundation Pirkanmaa fund
    Nuffic-funded NICHE-projectNICHE/ETH/246
    Academy of Finland353178, 312410, EPIPHYS 3121326400
    Sydäntutkimussäätiö
    Addis Ababa University

      UN SDGs

      This output contributes to the following UN Sustainable Development Goals (SDGs)

      1. SDG 3 - Good Health and Well-being
        SDG 3 Good Health and Well-being

      Publication forum classification

      • Publication forum level 1

      ASJC Scopus subject areas

      • General

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