Fabrication, characterization, and biocompatibility assessment of a novel elastomeric nanofibrous scaffold: A potential scaffold for soft tissue engineering

被引:16
|
作者
Jeshvaghani, Elham Shamirzaei [1 ]
Ghasemi-Mobarakeh, Laleh [1 ]
Mansurnezhad, Reza [1 ]
Ajalloueian, Fatemeh [2 ]
Kharaziha, Mahshid [3 ]
Dinari, Mohammad [4 ]
Jokandan, Maryam Sarni [2 ]
Chronakis, Ioannis S. [2 ]
机构
[1] Isfahan Univ Technol, Dept Text Engn, Esfahan 8415683111, Iran
[2] Tech Univ Denmark, Natl Food Inst, Res Grp Nanobio Sci, Lyngby, Denmark
[3] Isfahan Univ Technol, Dept Mat Engn, Esfahan 8415683111, Iran
[4] Isfahan Univ Technol, Dept Chem, Esfahan 8415683111, Iran
关键词
polycaprolactone fumarate; polycaprolactone; electrospinning; elastomer; soft tissue engineering; POLY(EPSILON-CAPROLACTONE FUMARATE) NETWORKS; POLYCAPROLACTONE FUMARATE; CHITOSAN; CELLS; PHOTOPOLYMERIZATION; POLYMERS;
D O I
10.1002/jbm.b.34043
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
With regard to flexibility and strength properties requirements of soft biological tissue, elastomeric materials could be more beneficial in soft tissue engineering applications. The present work investigates the use of an elastic polymer, (polycaprolactone fumarate [PCLF]), for fabricating an electrospun scaffold. PCLF with number-average molecular weight of 13,284 g/mol was synthetized, electrospun PCLF:polycaprolactone (PCL) (70:30) nanofibrous scaffolds were fabricated and a novel strategy (in situ photo-crosslinking along with wet electrospinning) was applied for crosslinking of PCLF in the structure of PCLF:PCL nanofibers was presented. Sol fraction results, Fourier-transform infrared spectroscopy, and mechanical tests confirmed occurrence of crosslinking reaction. Strain at break and Young's modulus of crosslinked PCLF:PCL nanofibers fabricated was found to be 114.5 +/- 3.9% and 0.6 +/- 0.1 MPa, respectively, and dynamic mechanical analysis results revealed elasticity of nanofibers. MTS assay showed biocompatibility of PCLF:PCL (70:30) nanofibrous scaffolds. Our overall results showed that electrospun PCLF:PCL nanofibrous scaffold could be considered as a candidate for further in vitro and in vivo experiments and its application for engineering of soft tissues subjected to in vivo cyclic mechanical stresses. (C) 2017 Wiley Periodicals, Inc.
引用
收藏
页码:2371 / 2383
页数:13
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