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In vivo biocompatibility of ultra-short single-walled carbon nanotube/biodegradable polymer nanocomposites for bone tissue engineering.

机译:用于骨组织工程的超短单壁碳纳米管/可生物降解聚合物纳米复合材料的体内生物相容性。

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摘要

Scaffolds play a pivotal role in the tissue engineering paradigm by providing temporary structural support, guiding cells to grow, assisting the transport of essential nutrients and waste products, and facilitating the formation of functional tissues and organs. Single-walled carbon nanotubes (SWNTs), especially ultra-short SWNTs (US-tubes), have proven useful for reinforcing synthetic polymeric scaffold materials. In this article, we report on the in vivo biocompatibility of US-tube reinforced porous biodegradable scaffolds in a rabbit model. US-tube nanocomposite scaffolds and control polymer scaffolds were implanted in rabbit femoral condyles and in subcutaneous pockets. The hard and soft tissue response was analyzed with micro-computed tomography (micro CT), histology, and histomorphometry at 4 and 12 weeks after implantation. The porous US-tube nanocomposite scaffolds exhibited favorable hard and soft tissue responses at both time points. At 12 weeks, a three-fold greater bone tissue ingrowth was seen in defects containing US-tube nanocomposite scaffolds compared to control polymer scaffolds. Additionally, the 12 week samples showed reduced inflammatory cell density and increased connective tissue organization. No significant quantitative difference in polymer degradation was observed among the various groups; qualitative differences between the two time points were consistent with expected degradation due to the progression of time. Although no conclusions can be drawn from the present study concerning the osteoinductivity of US-tube nanocomposite scaffolds, the results suggest that the presence of US-tubes may render nanocomposite scaffolds bioactive assisting osteogenesis.
机译:支架通过提供暂时的结构支持,引导细胞生长,协助必需营养素和废物的运输​​以及促进功能性组织和器官的形成,在组织工程范式中发挥关键作用。单壁碳纳米管(SWNT),尤其是超短SWNT(US管),已被证明可用于增强合成聚合物支架材料。在本文中,我们报告了兔模型中US管增强的多孔可生物降解支架的体内生物相容性。将US管纳米复合材料支架和对照聚合物支架植入兔股骨con和皮下袋中。植入后第4和第12周,通过微计算机断层扫描(micro CT),组织学和组织形态学分析了硬组织和软组织的反应。多孔的US管纳米复合材料支架在两个时间点均显示出良好的硬组织和软组织反应。与对照聚合物支架相比,在12周时,发现含有US管纳米复合支架的缺损的骨组织向内生长高出三倍。此外,这12周的样本显示出炎性细胞密度降低和结缔组织组织增加。在各组之间未观察到聚合物降解的显着定量差异;两个时间点之间的质量差异与由于时间的推移而导致的预期退化相一致。尽管从本研究中无法得出有关US管纳米复合支架的骨诱导性的结论,但结果表明US管的存在可能使纳米复合支架具有生物活性,从而有助于成骨。

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