Title of article :
Microstructural manipulation of electrospun scaffolds for specific bending stiffness for heart valve tissue engineering
Author/Authors :
Amoroso، نويسنده , , Nicholas J. and D’Amore، نويسنده , , Antonio and Hong، نويسنده , , Yi and Rivera، نويسنده , , Christian P. and Sacks، نويسنده , , Michael S. and Wagner، نويسنده , , William R.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
10
From page :
4268
To page :
4277
Abstract :
Biodegradable thermoplastic elastomers are attractive for application in cardiovascular tissue construct development due to their amenability to a wide range of physical property tuning. For heart valve leaflets, while low flexural stiffness is a key design feature, control of this parameter has been largely neglected in the scaffold literature where electrospinning is being utilized. This study evaluated the effect of processing variables and secondary fiber populations on the microstructure, tensile and bending mechanics of electrospun biodegradable polyurethane scaffolds for heart valve tissue engineering. Scaffolds were fabricated from poly(ester urethane) urea (PEUU) and the deposition mandrel was translated at varying rates in order to modify fiber intersection density. Scaffolds were also fabricated in conjunction with secondary fiber populations designed either for mechanical reinforcement or to be selectively removed following fabrication. It was determined that increasing fiber intersection densities within PEUU scaffolds was associated with lower bending moduli. Further, constructs fabricated with stiff secondary fiber populations had higher bending moduli whereas constructs with secondary fiber populations which were selectively removed had noticeably lower bending moduli. Insights gained from this work will be directly applicable to the fabrication of soft tissue constructs, specifically in the development of cardiac valve tissue constructs.
Keywords :
Structural analysis , mechanical characterization , Heart valve tissue engineering , electrospinning , bending modulus
Journal title :
Acta Biomaterialia
Serial Year :
2012
Journal title :
Acta Biomaterialia
Record number :
1756645
Link To Document :
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