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Journal of biomedical materials research. Part A 2020-Apr

Creation of a Contractile Biomaterial From a Decellularized Spinach Leaf Without ECM Protein Coating: An in vitro study.

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Emily Robbins
George Pins
Michael Laflamme
Glenn Gaudette

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Myocardial infarction (MI) results in the death of cardiac tissue, decreases regional contraction, and can lead to heart failure. Tissue engineered cardiac patches containing human induced pluripotent stem cell-derived cardiomyocytes (hiPS-CMs) can restore contractile function. However, cells within thick patches require vasculature for blood flow. Recently, we demonstrated fibronectin coated decellularized leaves provide a suitable scaffold for hiPS-CMs. Yet, the necessity of this additional coating step is unclear. Therefore, we compared hiPS-CM behavior on decellularized leaves coated with collagen IV or fibronectin extracellular matrix (ECM) proteins to non-coated leaves for up to 21 days. Successful coating was verified by immunofluorescence. Similar numbers of hiPS-CMs adhered to coated and non-coated decellularized leaves for 21 days. At day 14, collagen IV coated leaves contracted more than non-coated leaves (3.25+/-0.39% vs. 1.54+/-0.60%; p<0.05). However, no differences in contraction were found between coated leaves, coated tissue culture plastic (TCP), non-coated leaves, or non-coated TCP at other time points. No significant differences were observed in hiPS-CM spreading or sarcomere lengths on leaves with or without coating. This study demonstrates that cardiac scaffolds can be created from decellularized leaves without ECM coatings. Non-coated decellularized leaf surfaces facilitate robust cell attachment for an engineered tissue patch.

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