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Hierarchical Structure and Mechanical Improvement of an n-HA/GCO-PU Composite Scaffold for Bone Regeneration

机译:n-HA / GCO-PU复合材料骨再生支架的分层结构和力学性能改进

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摘要

To improve the mechanical properties of bone tissue and achieve the desired bone tissue regeneration for orthopedic surgery, newly designed hydroxyapatite/polyurethane (HA/PU) porous scaffolds were developed via in situ polymerization. The results showed that the molecular modification of PU soft segments by glyceride of castor oil (GCO) can increase the scaffold compressive strength by 48% and the elastic modulus by 96%. When nano-HA (n-HA) particles were incorporated into the GCO PU matrix, the compressive strength and elastic modulus further increased by 49 and 74%, from 2.91 to 4.34 MPa and from 95 to 165.36 MPa, respectively. The n-HA particles with fine dispersity not only improved the interface bonding with the GCO-PU matrix but also provided effective bioactivity for bonding with bone tissue. The hierarchical structure and mechanical quality of the n-HA/GCO-PU composite scaffold were determined to be appropriate for the growth of cells and the regeneration of bony tissues, demonstrating promising prospects for bone repair and regeneration.
机译:为了改善骨组织的机械性能并实现骨科手术所需的骨组织再生,通过原位聚合开发了新设计的羟基磷灰石/聚氨酯(HA / PU)多孔支架。结果表明,蓖麻油(GCO)甘油酯对PU软链段的分子修饰可以使支架的抗压强度提高48%,弹性模量提高96%。当将纳米HA(n-HA)颗粒掺入GCO PU基质中时,抗压强度和弹性模量分别从2.91到4.34 MPa和从95到165.36 MPa分别增加了49%和74%。具有良好分散性的n-HA颗粒不仅改善了与GCO-PU基质的界面结合,而且还提供了与骨组织结合的有效生物活性。确定n-HA / GCO-PU复合支架的层次结构和机械质量适合于细胞的生长和骨组织的再生,这表明了骨修复和再生的前景广阔。

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