首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >3D PRINTING OF NOVEL GRADIENT OSTEOCHONDRAL SCAFFOLDS TO BRIDGE THE GAP BETWEEN CARTILAGE AND BONE
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3D PRINTING OF NOVEL GRADIENT OSTEOCHONDRAL SCAFFOLDS TO BRIDGE THE GAP BETWEEN CARTILAGE AND BONE

机译:3D新型梯度骨质色脚手架的印刷弥合软骨和骨之间的差距

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Osteochondral tissue has a graded structure spanning from the subchondral bone region beneath the joint surface to the hyaline cartilage region at the joint surface. Biological, physiological, and mechanical properties over the regions cross-section vary greatly; this provides a significant challenge for tissue-engineered structures addressing osteochondral defects. The objective of this research is to investigate the effects of scaffold pore structure on mechanical, biological, and physiological properties of 3D printed tissue engineered osteochondral scaffolds. Our results indicate that gradient pore structures improve both mechanical properties and cell performance when compared to homogeneously distributed pores and non-porous structures. This study also indicates that including nanocrystalline hydroxyapatite (nHA) into the hydrogel scaffold further improves cellular performance compared to both porous scaffolds without nHA and nonporous scaffolds.
机译:骨色神经组织具有从关节表面下方的子骨髓骨区域跨越与关节表面的透明软骨区域跨越的分级结构。地区的生物,生理和机械性能横截面变化大大变化;这为寻址骨科缺陷的组织工程结构提供了重大挑战。该研究的目的是探讨支架孔隙结构对3D印刷组织工程骨质骨架支架的机械,生物学和生理特性的影响。我们的结果表明,与均匀分布的孔和非多孔结构相比,梯度孔结构改善机械性能和电池性能。本研究还表明,与没有NHA和无孔支架的多孔支架相比,包括纳米晶羟基磷灰石(NHA)进一步改善细胞性能。

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