Open AccessMaterials ScienceMedicineEngineering

Jun Zhou, Zhong-Xing Zhang, John Joseph, Xingcai Zhang, Bijan Emiliano Ferdows, D. Patel, Wei Chen, G. Banfi, R. Molinaro, D. Cosco, Na Kong, N. Joshi, O. Farokhzad, C. Corbo, Wei Tao

2021.10.1Exploration

DOI: 10.1002/exp.20210011

tlooto Summary

The progress of novel biomaterial and nanomedical approaches to bone regeneration are summarized and the current challenges that still hinder their clinical applications in treating bone defects are discussed.

Abstract

Bone defects pose a heavy burden on patients, orthopedic surgeons, and public health resources. Various pathological conditions cause bone defects including trauma, tumors, inflammation, osteoporosis, and so forth. Auto‐ and allograft transplantation have been developed as the most commonly used clinic treatment methods, among which autologous bone grafts are the golden standard. Yet the repair of bone defects, especially large‐volume defects in the geriatric population or those complicated with systemic disease, is still a challenge for regenerative medicine from the clinical perspective. The fast development of biomaterials and nanomedicine favors the emergence and promotion of efficient bone regeneration therapies. In this review, we briefly summarize the progress of novel biomaterial and nanomedical approaches to bone regeneration and then discuss the current challenges that still hinder their clinical applications in treating bone defects.

Citation format

ZHOU, Jun, et al. Biomaterials and nanomedicine for bone regeneration: Progress and future prospects. Exploration, 2021, 1.