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首页> 外文期刊>Journal of biomedical materials research, Part A >Three-dimensional macroscopic scaffolds with a gradient in stiffness for functional regeneration of interfacial tissues
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Three-dimensional macroscopic scaffolds with a gradient in stiffness for functional regeneration of interfacial tissues

机译:刚度梯度的三维宏观支架,用于界面组织的功能性再生

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摘要

A novel approach has been demonstrated to construct biocompatible, macroporous 3-D tissue engineering scaffolds containing a continuous macroscopic gradient in composition that yields a stiffness gradient along the axis of the scaffold. Polymeric microspheres, made of poly(D,L-lactic-co-glycolic acid) (PLGA), and composite microspheres encapsulating a higher stiffness nano-phase material (PLGA encapsulating CaCO3 or TiO2 nanoparticles) were used for the construction of microsphere-based scaffolds. Using controlled infusion of polymeric and composite microspheres, gradient scaffolds displaying an anisotropic macroscopic distribution of CaCO3/TiO2 were fabricated via an ethanol sintering technique. The controllable mechanical characteristics and biocompatible nature of these scaffolds warrants further investigation for interfacial tissue engineering applications.
机译:已经证明了一种新颖的方法来构建生物相容的大孔3-D组织工程支架,该支架在组成上包含连续的宏观梯度,该梯度产生沿支架的轴的刚度梯度。由聚(D,L-乳酸-乙醇酸共聚物)(PLGA)制成的聚合物微球和包裹更高刚度纳米相材料的复合微球(包裹有CaCO3或TiO2纳米粒子的PLGA)用于构建基于微球的脚手架。使用聚合物和复合微球的受控注入,通过乙醇烧结技术制备了显示出各向异性的CaCO3 / TiO2宏观分布的梯度支架。这些支架的可控制的机械特性和生物相容性性质需要进一步研究界面组织工程应用。

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