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Graded/Gradient Porous Biomaterials

机译:梯度/梯度多孔生物材料

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摘要

Biomaterials include bioceramics, biometals, biopolymers and biocomposites and they play important roles in the replacement and regeneration of human tissues. However, dense bioceramics and dense biometals pose the problem of stress shielding due to their high Young’s moduli compared to those of bones. On the other hand, porous biomaterials exhibit the potential of bone ingrowth, which will depend on porous parameters such as pore size, pore interconnectivity, and porosity. Unfortunately, a highly porous biomaterial results in poor mechanical properties. To optimise the mechanical and the biological properties, porous biomaterials with graded/gradient porosity, pores size, and/or composition have been developed. Graded/gradient porous biomaterials have many advantages over graded/gradient dense biomaterials and uniform or homogenous porous biomaterials. The internal pore surfaces of graded/gradient porous biomaterials can be modified with organic, inorganic, or biological coatings and the internal pores themselves can also be filled with biocompatible and biodegradable materials or living cells. However, graded/gradient porous biomaterials are generally more difficult to fabricate than uniform or homogenous porous biomaterials. With the development of cost-effective processing techniques, graded/gradient porous biomaterials can find wide applications in bone defect filling, implant fixation, bone replacement, drug delivery, and tissue engineering.
机译:生物材料包括生物陶瓷,生物金属,生物聚合物和生物复合材料,它们在人类组织的置换和再生中起重要作用。然而,致密的生物陶瓷和致密的生物金属由于与骨头相比具有较高的杨氏模量而造成应力屏蔽的问题。另一方面,多孔生物材料显示出骨向内生长的潜力,这将取决于多孔参数,例如孔径,孔互连性和孔隙率。不幸的是,高度多孔的生物材料导致差的机械性能。为了优化机械和生物学特性,已经开发了具有梯度/梯度孔隙率,孔尺寸和/或组成的多孔生物材料。梯度/梯度多孔生物材料与梯度/梯度致密生物材料和均匀或均质的多孔生物材料相比具有许多优点。梯度/梯度多孔生物材料的内部孔表面可以用有机,无机或生物涂层修饰,内部孔本身也可以填充有生物相容性和可生物降解的材料或活细胞。然而,梯度/梯度多孔生物材料通常比均匀或均质的多孔生物材料更难制造。随着具有成本效益的加工技术的发展,梯度/梯度多孔生物材料可以在骨缺损填充,植入物固定,骨置换,药物输送和组织工程中找到广泛的应用。

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