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The Future of Carbon-Based Scaffolds in Foot and Ankle Surgery

机译:脚踝手术中碳基支架的未来

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This article explores the use of carbon materials for orthobiological applications, investigates the feasibility of fabricating hybrid fibrous carbon scaffolds modified with polycaprolactone, and analyzes their mechanical properties and ability to support cell growth and proliferation. Environmental scanning electron microscopy, micro computed tomography, and cell adhesion and cell proliferation studies were used to test scaffold suitability as a cell-delivery vehicle. Mechanical properties were tested to examine load failure and elastic modulus. Overall, fibroblast adhesion and proliferation was greatest in lower-porosity carbon scaffolds with highly aligned fibers.
机译:本文探讨了碳材料在生物学上的应用,探讨了用聚己内酯改性的杂化纤维状碳支架的制备可行性,并分析了它们的机械性能以及支持细胞生长和增殖的能力。使用环境扫描电子显微镜,计算机断层扫描以及细胞粘附和细胞增殖研究来测试支架作为细胞递送载体的适用性。测试了机械性能以检查载荷破坏和弹性模量。总体而言,成纤维细胞的粘附和增殖在具有高度排列的纤维的低孔隙度碳支架中最大。

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