TY - JOUR
T1 - Applications of Graphene and Its Derivatives in Bone Repair
T2 - Advantages for Promoting Bone Formation and Providing Real-Time Detection, Challenges and Future Prospects
AU - Du, Zhipo
AU - Wang, Cunyang
AU - Zhang, Ruihong
AU - Wang, Xiumei
AU - Li, Xiaoming
N1 - Publisher Copyright:
© 2020 Du et al.
PY - 2020
Y1 - 2020
N2 - 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.
AB - 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.
KW - bone repair
KW - graphene
KW - graphene oxide
KW - real-time detection
KW - signaling pathways
UR - https://www.scopus.com/pages/publications/85094933967
U2 - 10.2147/IJN.S271917
DO - 10.2147/IJN.S271917
M3 - 文献综述
C2 - 33116486
AN - SCOPUS:85094933967
SN - 1176-9114
VL - 15
SP - 7523
EP - 7551
JO - International Journal of Nanomedicine
JF - International Journal of Nanomedicine
ER -