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首页> 外文期刊>Acta biomaterialia >Density-property relationships in mineralized collagen-glycosaminoglycan scaffolds.
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Density-property relationships in mineralized collagen-glycosaminoglycan scaffolds.

机译:矿化的胶原蛋白-糖胺聚糖支架的密度-特性关系。

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摘要

Mineralized collagen-glycosminoglycan scaffolds have previously been fabricated by freeze-drying a slurry containing a co-precipitate of calcium phosphate, collagen and glycosaminoglycan. The mechanical properties of the scaffold are low (e.g. the dry Young's modulus for a 50 wt.% mineralized scaffold is roughly 780 kPa). Our previous attempt to increase the mechanical properties of the scaffold by increasing the mineralization (from 50 to 75 wt.%) was unsuccessful due to defects in the more mineralized scaffold. In this paper, we describe a new technique to improve the mechanical properties by increasing the relative density of the scaffolds. The volume fraction of solids in the slurry was increased by vacuum-filtration. The slurry was then freeze-dried in the conventional manner to produce scaffolds with relative densities between 0.045 and 0.187 and pore sizes of about 100-350 microm, values appropriate for bone growth. The uniaxial compressive stress-strain curves of the scaffolds indicated that the Young's modulus in the dry state increased from 780 to 6500 kPa and that the crushing strength increased from 39 to 275 kPa with increasing relative density. In the hydrated state, the Young's modulus increased from 6.44 to 34.8 kPa and the crushing strength increased from 0.55 to 2.12 kPa; the properties were further increased by cross-linking. The modulus and strength were well described by models for cellular solids.
机译:先前已经通过冻干包含磷酸钙,胶原蛋白和糖胺聚糖的共沉淀物的浆液来制造矿化的胶原蛋白-糖胺聚糖支架。支架的机械性能低(例如,对于50重量%的矿化支架,其干杨氏模量约为780kPa)。由于增加矿化的支架中的缺陷,我们先前尝试通过增加矿化作用(从50%到75 wt。%)来提高支架的机械性能是失败的。在本文中,我们描述了一种通过增加支架的相对密度来改善机械性能的新技术。通过真空过滤增加浆料中固体的体积分数。然后将浆液以常规方式冷冻干燥以产生具有0.045至0.187之间的相对密度和约100-350微米的孔径(适合于骨生长的值)的支架。脚手架的单轴压缩应力-应变曲线表明,干态的杨氏模量从780 kPa增加到6500 kPa,抗压强度从39 kPa增大到275 kPa。在水合状态下,杨氏模量从6.44增加到34.8 kPa,抗碎强度从0.55增加到2.12 kPa。通过交联进一步提高了性能。模量和强度通过多孔固体模型很好地描述。

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