Zou Derong, Guo Lian, Lu Jiayu, Zhang Xiuli, Wei Jie, Liu Changsheng, Zhang Zhiyuan, Jiang Xinquan
Department of Oral and Maxillofacial Surgery, Ninth People's Hospital, School of Medicine, Shanghai JiaoTong University, Shanghai, P. R. China.
Tissue Eng Part A. 2012 Jul;18(13-14):1464-78. doi: 10.1089/ten.TEA.2011.0501. Epub 2012 May 3.
The aim of this study was to explore the effects of maxillary sinus floor elevation and simultaneous dental implantation with a tissue-engineered bone complex of calcium phosphate cement (CPC) scaffolds combined with bone marrow stromal cells (BMSCs). A large animal goat model is used with the tissue engineering method. Eighteen bilateral maxillary sinus of nine goats were randomly allocated into three groups; the CPC/BMSC complex (n=6) was used to elevate maxillary sinus floor with a simultaneous implant placement; the effects were compared with those treated with CPC alone (n=6) or autogenous bone (n=6). After a healing period of 3 months, sequential triad-color fluorescence labeling, micro-CT, as well as histological and histomorphometric analyses indicated that the tissue-engineered BMSC/CPC complex could promote earlier bone formation and mineralization, and maximally maintain the volume and height of the augmented maxillary sinus. By comparison, CPC-alone or autogenous bone achieved less bone formation and later mineralization. Besides, the average bone-implant contact value reflecting the osseointegration was 35.63%±9.42% in the BMSCs/CPC group, significantly higher than 22.47%±4.28% in the CPC-alone group or 28.26%±8.03% in the autogenous bone group. In conclusion, CPC serves as a potential substrate for BMSCs for the maxillary sinus floor augmentation and simultaneous implantation. The tissue-engineered bone might enhance the stability of implants and thus be of great significance to achieve improved quality to restore the oral function in clinic.
本研究旨在探讨磷酸钙骨水泥(CPC)支架与骨髓基质细胞(BMSC)组成的组织工程骨复合物进行上颌窦底提升并同期牙种植的效果。采用组织工程方法建立大型动物山羊模型。将9只山羊的18个双侧上颌窦随机分为3组;使用CPC/BMSC复合物(n = 6)进行上颌窦底提升并同期植入种植体;将其效果与单独使用CPC治疗组(n = 6)或自体骨治疗组(n = 6)进行比较。经过3个月的愈合期后,连续三色荧光标记、显微CT以及组织学和组织形态计量学分析表明,组织工程化的BMSC/CPC复合物可促进早期骨形成和矿化,并最大程度地维持上颌窦增高后的体积和高度。相比之下,单独使用CPC或自体骨的骨形成较少且矿化较晚。此外,反映骨结合的平均骨-种植体接触值在BMSCs/CPC组为35.63%±9.42%,显著高于单独使用CPC组的22.47%±4.28%或自体骨组的28.26%±8.03%。总之,CPC可作为BMSC用于上颌窦底增高及同期种植的潜在基质。组织工程骨可能会增强种植体的稳定性,因此对于在临床上提高恢复口腔功能的质量具有重要意义。