Highly controlled coating of strontium-doped hydroxyapatite on electrospun poly(-caprolactone) fibers

被引:12
|
作者
Weng, Lin [1 ,2 ]
Teusink, Matthew J. [3 ]
Shuler, Franklin D. [4 ]
Parecki, Vivi [1 ,2 ]
Xie, Jingwei [1 ,2 ]
机构
[1] Univ Nebraska Med Ctr, Dept Surg Transplant, Omaha, NE 68198 USA
[2] Univ Nebraska Med Ctr, Mary & Dick Holland Regenerat Med Program, Omaha, NE 68198 USA
[3] Univ Nebraska Med Ctr, Dept Orthoped Surg, Omaha, NE 68198 USA
[4] Marshall Univ, Joan C Edwards Sch Med, Dept Orthoped Surg, Huntington, WV 25701 USA
关键词
strontium; hydroxyapatite; coating; electrospinning; poly(-caprolactone) fibers; BONE REGENERATION; BIOACTIVE GLASS; POLY(EPSILON-CAPROLACTONE) FIBERS; OSTEOBLAST DIFFERENTIATION; NANOFIBER SCAFFOLDS; CALCIUM-PHOSPHATE; IN-VITRO; MINERALIZATION; RANELATE; CELLS;
D O I
10.1002/jbm.b.33598
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Electrospun fibers show great potential as scaffolds for bone tissue engineering due to their architectural biomimicry to the extracellular matrix (ECM). Cation substitution of strontium for calcium in hydroxyapatite (HAp) positively influences the mechanism of bone remodeling including enhancing bone regeneration and reducing bone resorption. The objective of this study was to attach strontium-doped HAp (SrHAp) to electrospun poly(-caprolactone) (PCL) fibers for creation of novel composite scaffolds that can not only mimic the architecture and composition of ECM but also affect bone remodeling favorably. We demonstrated for the first time the highly controlled SrHAp coatings on electrospun PCL fibers. We showed the reproducible manufacturing of composite fiber scaffolds with controllable thickness, composition, and morphology of SrHAp coatings. We further showed that the released strontium and calcium cations from coatings could reach effective concentrations within 1 day and endure more than 28 days. Additionally, the Young's modulus of the SrHAp-coated PCL fibers was up to around six times higher than that of raw fibers dependent on the coating thickness and composition. Together, this novel class of composite fiber scaffolds may hold great promise for bone regeneration. (c) 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 753-763, 2017.
引用
收藏
页码:753 / 763
页数:11
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