Author response for "HIF‐1α Regulates Osteoclast Activation and Mediates Osteogenesis During Mandibular Bone Repair via CT‐1"

Author(s):  
Yuanye Tian ◽  
Qi Shao ◽  
Yi Tang ◽  
Xinzhao Li ◽  
Xin Qi ◽  
...  
Oral Diseases ◽  
2020 ◽  
Author(s):  
Yuanye Tian ◽  
Qi Shao ◽  
Yi Tang ◽  
Xinzhao Li ◽  
Xin Qi ◽  
...  

2020 ◽  
Author(s):  
Michael Bouyer ◽  
Charlotte Garot ◽  
Paul Machillot ◽  
Julien Vollaire ◽  
Vincent Fitzpatrick ◽  
...  

Abstractthe reconstruction of large bone defects (12 cm3) remains a challenge for clinicians. We developed a new critical-size mandibular bone defect model on a mini-pig, close to human clinical issues. We analyzed the bone reconstruction obtained by a 3D printed scaffold made of clinical-grade PLA, coated with a polyelectrolyte film delivering an osteogenic bioactive molecule (BMP-2). We compared the results (CT-scan, μCT, histology) to the gold standard solution, bone autograft. We demonstrated that the dose of BMP-2 delivered from the scaffold significantly influenced the amount of regenerated bone and the repair kinetics, with a clear BMP-2 dose-dependence. Bone was homogeneously formed inside the scaffold without ectopic bone formation. The bone repair was as good as for the bone autograft. The BMP-2 doses applied in our study were reduced 20 to 75-fold compared to the commercial collagen sponges used in the current clinical applications, without any adverse effects. 3D printed PLA scaffolds loaded with reduced doses of BMP-2 can be a safe and simple solution for large bone defects faced in the clinic.


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