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PCL-HAp 支架中仿生矿化生长导致的杂化结构。

Hybrid structure in PCL-HAp scaffold resulting from biomimetic apatite growth.

机构信息

CIBER en Bioingeniería, Biomateriales y Nanomedicina, Valencia, Spain.

出版信息

J Mater Sci Mater Med. 2010 Jan;21(1):33-44. doi: 10.1007/s10856-009-3838-6.

Abstract

Polymer-ceramic composites are favourite candidates when aiming to replace bone tissue. We present here scaffolds made of polycaprolactone-hydroxyapatite (PCL-HAp) composites, and investigate in vitro mineralisation of the scaffolds in SBF after or without a nucleation treatment. In vitro bioactivity is enhanced by HAp incorporation as well as by nucleation treatment, as demonstrated by simulated body fluid (SBF) mineralization. Surprisingly, we obtained a hybrid interconnected organic-inorganic structure, as a result of micropore invasion by biomimetic apatite, which results in a mechanical strengthening of the material after two weeks of immersion in SBF92. The presented scaffolds, due to their multiple qualities, are expected to be valuable supports for bone tissue engineering.

摘要

聚合物-陶瓷复合材料是替代骨组织的首选材料。我们在此展示了由聚己内酯-羟基磷灰石(PCL-HAp)复合材料制成的支架,并研究了支架在 SBF 中的矿化情况,包括有无成核处理。HAp 的掺入以及成核处理都增强了体外生物活性,这一点可以通过模拟体液(SBF)矿化来证明。令人惊讶的是,我们获得了一种混合的有机-无机互联结构,这是由于仿生磷灰石侵入微孔所致,这导致材料在 SBF92 中浸泡两周后机械强度增强。由于具有多种特性,所提出的支架有望成为骨组织工程的有价值的支撑物。

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