Functional Differences in Engineered Myocardium from Embryonic Stem Cell-Derived versus Neonatal Cardiomyocytes
نویسندگان
چکیده
Stem cell-derived cardiomyocytes represent unique tools for cell- and tissue-based regenerative therapies, drug discovery and safety, and studies of fundamental heart-failure mechanisms. However, the degree to which stem cell-derived cardiomyocytes compare to mature cardiomyocytes is often debated. We reasoned that physiological metrics of engineered cardiac tissues offer a means of comparison. We built laminar myocardium engineered from cardiomyocytes that were differentiated from mouse embryonic stem cell-derived cardiac progenitors or harvested directly from neonatal mouse ventricles, and compared their anatomy and physiology in vitro. Tissues assembled from progenitor-derived myocytes and neonate myocytes demonstrated similar cytoskeletal architectures but different gap junction organization and electromechanical properties. Progenitor-derived myocardium had significantly less contractile stress and slower longitudinal conduction velocity than neonate-derived myocardium, indicating that the developmental state of the cardiomyocytes affects the electromechanical function of the resultant engineered tissue. These data suggest a need to establish performance metrics for future stem cell applications.
منابع مشابه
Genetically Engineered Mouse Embryonic Stem Cell – derived Cardiomyocytes as a Suitable Model on Drugs Toxicity In vitro
Background DOX is a powerful chemotherapeutic agent used in the treatment of solid tumors and malignant hematological diseases. However, its cardiac toxicity limits the clinical usefulness of this drug. Previous reports have shown Corticosteroids induce a cytoprotective effect on cardiomyocytes. Mouse transgenic embryonic stem cell-derived pure cardiomyocytes may be considered as a model for a...
متن کاملThe Effect of Cardio Gel and Matrigel on the Ultrastructure of Cardiomyocytes Derived From Mouse Embryonic Stem Cells
Purpose: To investigate the effect of cardiogel and matrigel on the ultrastructure of embryonic stem cell-derived cardiomyocytes. ECM: Extracellular Matrix derived from cardiac fibroblasts (cardiogel), commercial extracellular matrix (matrigel) and control group (without ECM) were cultured for up to 21 days. Ultrastructural properties of cardiomyocytes were evaluated by transmitting electron mi...
متن کاملVirgin birth: engineered heart muscle from parthenogenetic stem cells.
Cardiac muscle restitution, or true regeneration, is an unmet need in the treatment of myocardial infarction (MI), prompting a decade of study with stem cells of many kinds. Among key obstacles to effective cardiac cell grafting are the cost of autologous stem cell-derived cardiomyocytes, the ethical implications of using embryonic stem cell (ESC) products, immunological barriers to allogeneic ...
متن کاملDevelopmental stage-dependent effects of cardiac fibroblasts on function of stem cell-derived engineered cardiac tissues
We investigated whether the developmental stage of mouse cardiac fibroblasts (CFs) influences the formation and function of engineered cardiac tissues made of mouse embryonic stem cell-derived cardiomyocytes (mESC-CMs). Engineered cardiac tissue patches were fabricated by encapsulating pure mESC-CMs, mESC-CMs + adult CFs, or mESC-CMs + fetal CFs in fibrin-based hydrogel. Tissue patches containi...
متن کاملEmbryonic stem cells derived cardiomyocytes are a suitable model for assessment of cardiotoxic effects of doxorubicin and other drugs
Introduction: Doxorubicin is frequently used for treatment of several types of cancer. Doxorubicin cardiac toxicity has limited the use of this drug. Corticosteroids may prevent doxorubicin induced cardiotoxicity. Therefore the aim of this study was to evaluate mouse embryonic stem cells derived cardiomyocytes as a model to evaluate the effect of Doxorubicin and dexamethasone. Methods: Mouse ...
متن کامل