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Macro- and micromechanical behaviors of poly(lactic acid)-hydroxyapatite electrospun composite scaffolds

机译:聚(乳酸)-羟基磷灰石静电纺丝复合支架的宏观和微观力学行为

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摘要

It was demonstrated that the macro- and micromechanical behaviors of electrospun composite scaffolds based on PLA and HA can be simultaneously studied using 3D digital image correlation strain measurements coupled with an axial tensile test. It was proven that the addition of a small quantity (2) of HA particles into PLA electrospun scaffolds decreased their mechanical properties by approximately 40 and 60 at the micro- and macroscales, respectively; nevertheless, when this amount was increased beyond 2 of HA, the composites recovered their stiffness, showing Young's moduli ranging between 400 and 600 MPa. Hence, the mechanical responses of PLA-4 HA and PLA-6 HA electrospun scaffolds were conveniently enhanced with the addition of hydroxyapatite nanoparticles. The micromechanical measurements were able to capture the microstrain mechanism between electrospun nanofibers and the effect of HA nanoparticles on their mechanical response. This methodology could be a powerful tool for developing scaffolds for specific applications in tissue engineering.
机译:结果表明,利用三维数字图像相关应变测量和轴向拉伸试验,可以同时研究基于PLA和HA的静电纺丝复合支架的宏观和微观力学行为。结果表明,在PLA静电纺丝支架中加入少量(2%)HA颗粒,在微观和宏观尺度上分别降低了约40%和60%的力学性能;然而,当该量增加到HA的2%以上时,复合材料恢复了刚度,杨氏模量在400至600 MPa之间。因此,通过添加羟基磷灰石纳米颗粒,可以方便地增强PLA-4% HA和PLA-6% HA静电纺丝支架的力学响应。微力学测量能够捕捉到静电纺丝纳米纤维之间的微应变机制以及HA纳米颗粒对其机械响应的影响。这种方法可以成为开发用于组织工程中特定应用的支架的有力工具。

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