Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Fast Degradable Calcium Phosphate Cement for Maxillofacial Bone Regeneration

作者:Bart van Oirschot, Antonios G. Mikos, Qian Liu, Jeroen J.J.P. van den Beucken, John A. Jansen · 发表于:Tissue Engineering Part A · 年份:2022 · DOI:10.1089/ten.tea.2022.0177 · 被引用次数:22 · 研究领域:Dental Implant Techniques and Outcomes、Periodontal Regeneration and Treatments、Bone Tissue Engineering Materials

) was included for comparison. Critical-sized circular mandibular bone defects were created and filled with either CPC-PLGA-CMC without coverage with a GBR membrane or BioOss covered with a GBR membrane and left to heal for 4 and 12 weeks to obtain temporal insight in material degradation and bone formation. Bone formation increased significantly for both CPC-PLGA-CMC and BioOss with increasing implantation time. Further, no significant differences were found for bone formation at either 4 or 12 weeks between CPC-PLGA-CMC and BioOss. Finally, bone substitute material degradation increased significantly for both CPC-PLGA-CMC and BioOss from 4 to 12 weeks of implantation, showing the highest degradation for CPC-PLGA-CMC (∼85%) compared to BioOss (∼12%). In conclusion, this minipig study showed that CPC-PLGA-CMC can be used as a bone-grafting material and stimulates bone regeneration to a comparable extent as with BioOss particles. Importantly, CPC-PLGA-CMC degrades faster compared to BioOss, is easier to apply into a bone defect, and does not need the use of an additional GBR membrane. Consequently, the data support the further investigation of CPC-PLGA-CMC in human clinical trials. Impact statement Guided bone regeneration (GBR) is a frequently used dental surgical technique to regenerate the alveolar ridge to allow stable implant installation. However, stabilization of the GBR membrane and avoidance of bone graft movement remain a challenge. Consequently, there is need for th...