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Mechanically tissue-like elastomeric polymers and their potential as a vehicle to deliver functional cardiomyocytes. | LitMetric

Mechanically tissue-like elastomeric polymers and their potential as a vehicle to deliver functional cardiomyocytes.

J Mech Behav Biomed Mater

Department of Materials Engineering and Monash Centre of Electron Microscope, Monash University, Clayton, Victoria 3800, Australia.

Published: December 2013

One of the major challenges in the field of biomaterials engineering is the replication of the non-linear elasticity observed in soft tissues. In the present study, non-linearly elastic biomaterials were successfully fabricated from a chemically cross-linked elastomeric poly(glycerol sebacate) (PGS) and thermoplastic poly(L-lactic acid) (PLLA) using the core/shell electrospinning technique. The spun fibrous materials, containing a PGS core and PLLA shell, demonstrated J-shaped stress-strain curves, and having ultimate tensile strength, rupture elongation, and stiffness constants respectively comparable to muscle tissue properties. In vitro evaluations also showed that PGS/PLLA fibrous biomaterials possess excellent biocompatibility, capable of supporting human stem-cell-derived cardiomyocytes over several weeks in culture. Therefore, the core/shell electrospun elastomeric materials provide a new potential scaffold to support cells in the therapy of a wide range of soft tissues exposed to cyclic deformation, such as tendon, ligament, cardiac or smooth muscle and lung epithelium.

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http://dx.doi.org/10.1016/j.jmbbm.2013.06.005DOI Listing

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