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Three-Dimensional Scaffolds of Carbonized Polyacrylonitrile for Bone Tissue Regeneration

机译:碳化聚丙烯腈用于骨组织再生的三维支架

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摘要

Carbon-based materials have been extensively studied for stem cell culture. However, difficulties associated with engineering pure carbon materials into 3D scaffolds have hampered applications in tissue engineering and regenerative medicine. Carbonized polyacrylonitrile (cPAN) could be a promising alternative, as cPAN is a highly ordered carbon isomorph that resembles the graphitic structure and can be easily processed into 3D scaffolds. Despite the notable features of cPAN, application of cPAN in tissue engineering and regenerative medicine have not been explored. This study, for the first time, demonstrates the fabrication of microporous 3D scaffolds of cPAN and excellent osteoinductivity of cPAN, suggesting utility of 3D cPAN scaffolds as synthetic bone graft materials. The combination of excellent processability and unique bioactive properties of cPAN may lead to future applications in orthopedic regenerative medicine.
机译:碳基材料已被广泛研究用于干细胞培养。然而,与将纯碳材料工程化为3D支架相关的困难阻碍了在组织工程和再生医学中的应用。碳化聚丙烯腈(cPAN)可能是一个有前途的替代方案,因为cPAN是一种类似于石墨结构的高度有序的碳同构异构体,可以轻松加工成3D支架。尽管cPAN具有显着特征,但尚未探索cPAN在组织工程和再生医学中的应用。这项研究首次证明了cPAN微孔3D支架的制备和cPAN的优异骨诱导性,表明3D cPAN支架可用作合成骨移植材料。 cPAN优异的可加工性和独特的生物活性特性的结合可能导致其在骨科再生医学中的未来应用。

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