首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >In vitro mechanical fatigue behavior of poly-epsilon-caprolactone macroporous scaffolds for cartilage tissue engineering: Influence of pore filling by a poly(vinyl alcohol) gel
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In vitro mechanical fatigue behavior of poly-epsilon-caprolactone macroporous scaffolds for cartilage tissue engineering: Influence of pore filling by a poly(vinyl alcohol) gel

机译:软骨组织工程用聚ε-己内酯大孔支架的体外机械疲劳行为:聚乙烯醇凝胶填充孔的影响

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摘要

Polymeric scaffolds used in regenerative therapies are implanted in the damaged tissue and submitted to repeated loading cycles. In the case of articular cartilage engineering, an implanted scaffold is typically subjected to long-term dynamic compression. The evolution of the mechanical properties of the scaffold during bioresorption has been deeply studied in the past, but the possibility of failure due to mechanical fatigue has not been properly addressed. Nevertheless, the macroporous scaffold is susceptible to failure after repeated loading-unloading cycles. In this work fatigue studies of polycaprolactone scaffolds were carried by subjecting the scaffold to repeated compression cycles in conditions simulating the scaffold implanted in the articular cartilage. The behavior of the polycaprolactone sponge with the pores filled with a poly(vinyl alcohol) gel simulating the new formed tissue within the pores was compared with that of the material immersed in water. Results were analyzed with Morrow's criteria for failure and accurate fittings are obtained just up to 200 loading cycles. It is also shown that the presence of poly(vinyl alcohol) increases the elastic modulus of the scaffolds, the effect being more pronounced with increasing the number of freeze/thawing cycles. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 103B: 1037-1043, 2015.
机译:在再生疗法中使用的聚合物支架被植入受损的组织中,并经受重复的加载循环。在进行关节软骨工程的情况下,通常会对植入的支架进行长期动态压缩。过去已经对生物吸收过程中支架的机械性能的演变进行了深入研究,但是由于机械疲劳而导致失效的可能性尚未得到适当解决。然而,在重复的加载-卸载循环后,大孔支架易于失效。在这项工作中,对聚己内酯支架进行了疲劳研究,方法是在与模拟植入到关节软骨中的支架相类似的条件下,使支架经受重复的压缩循环。将填充有聚乙烯醇凝胶的孔模拟了孔中新形成的组织的聚己内酯海绵的行为与浸入水中的材料的行为进行了比较。使用Morrow的失效标准分析结果,并在多达200个加载周期内获得了精确的拟合。还显示出聚乙烯醇的存在增加了支架的弹性模量,该效果随着增加的冷冻/解冻循环数而更加明显。 (c)2014 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,103B:1037-1043,2015。

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