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Applications of Graphene and Its Derivatives in Bone Repair: Advantages for Promoting Bone Formation and Providing Real-Time Detection, Challenges and Future Prospects

机译:石墨烯及其衍生物在骨修复中的应用:促进骨骼形成的优势,提供实时检测,挑战和未来前景

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During continuous innovation in the preparation, characterization and application of various bone repair materials for several decades, nanomaterials have exhibited many unique advantages. As a kind of representative two-dimensional nanomaterials, graphene and its derivatives (GDs) such as graphene oxide and reduced graphene oxide have shown promising potential for the application in bone repair based on their excellent mechanical properties, electrical conductivity, large specific surface area (SSA) and atomic structure stability. Herein, we reviewed the updated application of them in bone repair in order to present, as comprehensively, as possible, their specific advantages, challenges and current solutions. Firstly, how their advantages have been utilized in bone repair materials with improved bone formation ability was discussed. Especially, the effects of further functionalization or modification were emphasized. Then, the signaling pathways involved in GDs-induced osteogenic differentiation of stem cells and immunomodulatory mechanism of GDs-induced bone regeneration were discussed. On the other hand, their applications as contrast agents in the field of bone repair were summarized. In addition, we also reviewed the progress and related principles of the effects of GDs parameters on cytotoxicity and residues. At last, the future research was prospected.
机译:在持续创新过程中,各种骨修复材料的制备,表征和应用几十年来,纳米材料表现出许多独特的优势。作为一种代表性的二维纳米材料,石墨烯及其衍生物(GDS),例如石墨烯氧化物和还原的氧化烯氧化物已经显示出对骨骼修复中的应用的有希望的电位,基于它们的优异的机械性能,导电性,大的比表面积( SSA)和原子结构稳定性。在此,我们审查了它们在骨骼修复中的更新应用,以便尽可能地展示其特定的优势,挑战和当前解决方案。首先,讨论了改善骨形成能力的骨修复材料中的优点。特别是,强调了进一步官能化或改性的影响。然后,讨论了所涉及的GDS诱导的干细胞的骨质发生分化和GDS诱导的骨再生的免疫调节机制的信号传导途径。另一方面,总结了它们作为骨修复领域的造影剂的应用。此外,我们还审查了GDS参数对细胞毒性和残留物影响的进展和相关原则。最后,未来的研究被展望了。

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