4.6 Article

Anti-fibrotic Effects of Cardiac Progenitor Cells in a 3D-Model of Human Cardiac Fibrosis

Journal

FRONTIERS IN CARDIOVASCULAR MEDICINE
Volume 6, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fcvm.2019.00052

Keywords

cardiac fibrosis; cardiac tissue engineering; in vitro 3D models; cardiac progenitor cells; stem cell therapy; extracellular vesicles

Funding

  1. Innovation and the Netherlands CardioVascular Research Initiative (CVON): The Dutch Heart Foundation [2017T040]
  2. Dutch Federation of University Medical Centers
  3. Netherlands Organization for Health Research and Development
  4. Royal Netherlands Academy of Science
  5. ZonMW Translational Adult Stem Cell Grant [1161002016]
  6. Horizon2020 ERC-2016-COG EVICARE [725229]

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Cardiac fibroblasts play a key role in chronic heart failure. The conversion from cardiac fibroblast to myofibroblast as a result of cardiac injury, will lead to excessive matrix deposition and a perpetuation of pro-fibrotic signaling. Cardiac cell therapy for chronic heart failure may be able to target fibroblast behavior in a paracrine fashion. However, no reliable human fibrotic tissue model exists to evaluate this potential effect of cardiac cell therapy. Using a gelatin methacryloyl hydrogel and human fetal cardiac fibroblasts (hfCF), we created a 3D in vitro model of human cardiac fibrosis. This model was used to study the possibility to modulate cellular fibrotic responses. Our approach demonstrated paracrine inhibitory effects of cardiac progenitor cells (CPC) on both cardiac fibroblast activation and collagen synthesis in vitro and revealed that continuous cross-talk between hfCF and CPC seems to be indispensable for the observed anti-fibrotic effect.

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