首页> 外文会议>Bioengineering Conference (NEBEC), 2012 38th Annual Northeast >Poly(caprolactone) shape memory scaffold for bone tissue engineering
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Poly(caprolactone) shape memory scaffold for bone tissue engineering

机译:用于骨组织工程的聚己内酯形状记忆支架

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Using synthetic scaffolds as a vessel for bone tissue engineering is a promising technique that could address current limitations associated with autologous grafts, such as donor site scarcity and morbidity. In this study, we aimed to synthesize a biocompatible scaffold with controllable pore morphology that could be used to fill critical size defects through the shape memory effect. To achieve this goal we used a porogen-leaching technique in which a shape memory poly(caprolactone) (PCL) was cured in the presence of salt particles, which were subsequently removed to create high porosity in the scaffold. The overall shape memory behavior of the scaffold was investigated and it was found that the material exhibited greater than 99 % shape fixing and 93 % shape recovery. Preliminary cell culture studies on a non-triggered scaffold showed that cells readily attached to the material and remained viable within the scaffold.
机译:使用合成支架作为骨组织工程的血管是一种有前途的技术,可以解决当前与自体移植相关的局限性,例如供体部位的稀缺性和发病率。在这项研究中,我们旨在合成具有可控孔形态的生物相容性支架,该支架可用于通过形状记忆效应填补关键尺寸缺陷。为实现此目标,我们使用了一种成孔剂浸出技术,其中,形状记忆聚己内酯(PCL)在存在盐颗粒的情况下固化,随后将其去除以在支架中形成高孔隙率。研究了支架的总体形状记忆行为,发现该材料表现出大于99%的形状固定性和93%的形状恢复性。在未触发的支架上进行的初步细胞培养研究表明,细胞易于附着在材料上,并在支架内保持活力。

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