Issue 36, 2023

Functional anti-bone tumor biomaterial scaffold: construction and application

Abstract

Bone tumors, including primary bone tumors and bone metastases, have been plagued by poor prognosis for decades. Although most tumor tissue is removed, clinicians are still confronted with the dilemma of eliminating residual cancer cells and regenerating defective bone tissue after surgery. Therefore, functional biomaterial scaffolds are considered to be the ideal candidates to bridge defective tissues and restrain cancer recurrence. Through functionalized structural modifications or coupled therapeutic agents, they provide sufficient mechanical strength and osteoinductive effects while eliminating cancer cells. Numerous novel approaches such as photodynamic, photothermal, drug-conjugated, and immune adjuvant-assisted therapies have exhibited remarkable efficacy against tumors while exhibiting low immunogenicity. This review summarizes the progress of research on biomaterial scaffolds based on different functionalization strategies in bone tumors. We also discuss the feasibility and advantages of the combined application of multiple functionalization strategies. Finally, potential obstacles to the clinical translation of anti-tumor bone bioscaffolds are highlighted. This review will provide valuable references for future advanced biomaterial scaffold design and clinical bone tumor therapy.

Graphical abstract: Functional anti-bone tumor biomaterial scaffold: construction and application

Article information

Article type
Review Article
Submitted
24 Dzi 2023
Accepted
21 Kho 2023
First published
27 Kho 2023

J. Mater. Chem. B, 2023,11, 8565-8585

Functional anti-bone tumor biomaterial scaffold: construction and application

B. Huang, Z. Yin, F. Zhou and J. Su, J. Mater. Chem. B, 2023, 11, 8565 DOI: 10.1039/D3TB00925D

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