Ding Yurun, Du Zhe, Zhu Zhonglin, Yu Xiaoming, Wang You
Department of Bone and Joint Surgery, Renji Hospital, School of Medicine, Shanghai Jiaotong University 145 Middle Shandong Road Shanghai China 200001
Trauma and Emergency Center, Peking University People's Hospital Beijing China
RSC Adv. 2018 Jul 12;8(44):25127-25132. doi: 10.1039/c8ra03157f. eCollection 2018 Jul 9.
Biodegradable magnesium (Mg)-copper (Cu) coatings are promising in orthopedic implants to enhance osteogenesis. The present study aimed to compare the osteogenic effect of Mg-Cu coating and non-coating implants using a rabbit model. Mg/Mg-Cu coating of porous Ti6Al4V alloys was performed by the arc ion plating method. Five porous implants (smooth, porous, Mg coated, Mg-0.1Cu coated, and Mg-0.7Cu coated) were implanted into the distal femurs of the rabbits. The rabbits were sacrificed after one and two months, respectively, and the distal femurs with the implants were analyzed micro-computed tomography (CT), double fluorescent labeling, and hard tissue biopsy to evaluate their osteogenic effect. During the two months of observation, the Mg/Mg-Cu coatings exhibited no advantages when compared with the bare porous structures in terms of bone integration; however, the porous structures were more conducive for bone ingrowth than the smooth implants. The osteogenic application of Mg-Cu coated orthopedic implants is worth further investigation. Furthermore, due to its long-term antibacterial ability, the biodegradable Mg-Cu coatings are promising in orthopedic applications.
可生物降解的镁(Mg)-铜(Cu)涂层在骨科植入物中具有增强骨生成的潜力。本研究旨在使用兔模型比较Mg-Cu涂层植入物和非涂层植入物的成骨效果。采用电弧离子镀法在多孔Ti6Al4V合金上制备Mg/Mg-Cu涂层。将五种多孔植入物(光滑的、多孔的、Mg涂层的、Mg-0.1Cu涂层的和Mg-0.7Cu涂层的)植入兔的股骨远端。分别在1个月和2个月后处死兔子,并对带有植入物的股骨远端进行显微计算机断层扫描(CT)、双重荧光标记和硬组织活检,以评估其成骨效果。在两个月的观察期内,Mg/Mg-Cu涂层在骨整合方面与裸露的多孔结构相比没有优势;然而,多孔结构比光滑植入物更有利于骨长入。Mg-Cu涂层骨科植入物的成骨应用值得进一步研究。此外,由于其长期抗菌能力,可生物降解的Mg-Cu涂层在骨科应用中具有潜力。