Li Xiao, Jiang Huiquan, He Ning, Yuan Wei-En, Qian Yun, Ouyang Yuanming
Department of Orthopedics, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, Shanghai, China.
College of Fisheries and Life Science, Shanghai Ocean University, Shanghai, China.
Cyborg Bionic Syst. 2022 Sep 10;2022:9892526. doi: 10.34133/2022/9892526. eCollection 2022.
Graphdiyne (GDY) is a new member of the family of carbon-based nanomaterials with hybridized carbon atoms of sp and sp, including , , , and (6,6,12)-GDY, which differ in their percentage of acetylene bonds. The unique structure of GDY provides many attractive features, such as uniformly distributed pores, highly -conjugated structure, high thermal stability, low toxicity, biodegradability, large specific surface area, tunable electrical conductivity, and remarkable thermal conductivity. Therefore, GDY is widely used in energy storage, catalysis, and energy fields, in addition to biomedical fields, such as biosensing, cancer therapy, drug delivery, radiation protection, and tissue engineering. In this review, we first discuss the synthesis of GDY with different shapes, including nanotubes, nanowires, nanowalls, and nanosheets. Second, we present the research progress in the biomedical field in recent years, along with the biodegradability and biocompatibility of GDY based on the existing literature. Subsequently, we present recent research results on the use of nanomaterials in peripheral nerve regeneration (PNR). Based on the wide application of nanomaterials in PNR and the remarkable properties of GDY, we predict the prospects and current challenges of GDY-based materials for PNR.
石墨炔(GDY)是碳基纳米材料家族的新成员,其碳原子具有sp和sp²杂化,包括[此处原文缺失具体结构名称,无法准确翻译]、[此处原文缺失具体结构名称,无法准确翻译]、[此处原文缺失具体结构名称,无法准确翻译]和(6,6,12)-GDY,它们的乙炔键百分比不同。GDY的独特结构具有许多吸引人的特性,如均匀分布的孔隙、高度共轭的结构、高热稳定性、低毒性、生物可降解性、大比表面积、可调电导率和显著的热导率。因此,除了生物医学领域,如生物传感、癌症治疗、药物递送、辐射防护和组织工程外,GDY还广泛应用于储能、催化和能源领域。在这篇综述中,我们首先讨论了不同形状的GDY的合成,包括纳米管、纳米线、纳米壁和纳米片。其次,我们根据现有文献介绍了近年来生物医学领域的研究进展,以及GDY的生物可降解性和生物相容性。随后,我们展示了纳米材料在周围神经再生(PNR)中应用的最新研究成果。基于纳米材料在PNR中的广泛应用以及GDY的显著特性,我们预测了基于GDY的材料在PNR中的前景和当前面临的挑战。