首页> 外文期刊>Acta biomaterialia >Compression behaviour of biphasic calcium phosphate and biphasic calcium phosphate-agarose scaffolds for bone regeneration.
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Compression behaviour of biphasic calcium phosphate and biphasic calcium phosphate-agarose scaffolds for bone regeneration.

机译:双相磷酸钙和双相磷酸钙-琼脂糖支架对骨再生的压缩行为。

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摘要

There is an acknowledged need for shaping 3-D scaffolds with adequate porosity and mechanical properties for biomedical applications. The mechanical properties under static and cyclic compressive testing of dense and designed porous architecture bioceramic scaffolds based on the biphasic calcium phosphate (BCP) systems and BCP-agarose systems have been evaluated. The dense and designed porous architecture scaffolds in BCP systems exhibited a brittle behaviour. Agarose, a biocompatible and biodegradable hydrogel, has been used to shape designed architecture ceramic-agarose scaffolds following a low-temperature shaping method. Agarose conferred toughness, ductility and a rubbery consistency for strains of up to 60% of in ceramic BCP-agarose systems. This combination of ceramic and organic matrix helps to avoid the inherent brittleness of the bioceramic and enhances the compression resistance of hydrogel. The presence of mechanical hysteresis, permanent deformation after the first cycle and recovery of the master monotonous curve indicate a Mullins-like effect such as that observed in carbon-filled rubber systems. We report this type of mechanical behaviour, the Mullins effect, for the first time in bioceramics and bioceramic-agarose systems.
机译:对于生物医学应用,需要成形具有足够的孔隙率和机械性能的3-D支架。基于双相磷酸钙(BCP)系统和BCP-琼脂糖体系的致密设计多孔结构生物陶瓷支架在静态和循环压缩测试下的机械性能已得到评估。 BCP系统中设计密集且多孔的多孔结构支架表现出脆性。琼脂糖是一种生物相容性和可生物降解的水凝胶,已被采用低温成型方法来成型设计的建筑陶瓷-琼脂糖支架。琼脂糖可赋予陶瓷BCP-琼脂糖体系高达60%的菌株韧性,延展性和橡胶状稠度。陶瓷和有机基质的这种组合有助于避免生物陶瓷固有的脆性,并增强水凝胶的抗压性。机械滞后的存在,第一个循环后的永久变形以及主单调曲线的恢复表明存在类似于Mullins的效应,例如在含碳橡胶系统中观察到的那样。我们首次在生物陶瓷和生物陶瓷-琼脂糖系统中报道了这种机械行为,即穆林斯效应。

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