Molecular Laboratory for Gene Therapy and Tooth Regeneration, Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, Capital Medical University School of Stomatology, Beijing, People's Republic of China.
Stem Cells Dev. 2013 Jun 15;22(12):1752-62. doi: 10.1089/scd.2012.0688. Epub 2013 Mar 15.
Our previous proof-of-concept study showed the feasibility of regenerating the dental stem cell-based bioengineered tooth root (bio-root) structure in a large animal model. Here, we used allogeneic dental mesenchymal stem cells to regenerate bio-root, and then installed a crown on the bio-root to restore tooth function. A root shape hydroxyapatite tricalcium phosphate scaffold containing dental pulp stem cells was covered by a Vc-induced periodontal ligament stem cell sheet and implanted into a newly generated jaw bone implant socket. Six months after implantation, a prefabricated porcelain crown was cemented to the implant and subjected to tooth function. Clinical, radiological, histological, ultrastructural, systemic immunological evaluations and mechanical properties were analyzed for dynamic changes in the bio-root structure. The regenerated bio-root exhibited characteristics of a normal tooth after 6 months of use, including dentinal tubule-like and functional periodontal ligament-like structures. No immunological response to the bio-roots was observed. We developed a standard stem cell procedure for bio-root regeneration to restore adult tooth function. This study is the first to successfully regenerate a functional bio-root structure for artificial crown restoration by using allogeneic dental stem cells and Vc-induced cell sheet, and assess the recipient immune response in a preclinical model.
我们之前的概念验证研究表明,在大型动物模型中再生基于牙干细胞的生物工程牙根(生物根)结构是可行的。在这里,我们使用同种异体牙间充质干细胞来再生生物根,然后在生物根上安装牙冠以恢复牙齿功能。一个含有牙髓干细胞的根形状羟基磷灰石三钙磷酸盐支架被一层 VC 诱导的牙周膜干细胞片覆盖,并植入新生成的颌骨种植窝中。植入后 6 个月,将预制的烤瓷牙冠粘接到种植体上,并进行牙齿功能测试。对生物根结构的动态变化进行了临床、影像学、组织学、超微结构、全身免疫评价和机械性能分析。使用 6 个月后,再生的生物根表现出正常牙齿的特征,包括牙本质小管样和功能性牙周膜样结构。未观察到对生物根的免疫反应。我们开发了一种标准的干细胞程序来再生生物根以恢复成人牙齿功能。这项研究首次成功地使用同种异体牙干细胞和 VC 诱导的细胞片再生了功能性生物根结构,并在临床前模型中评估了受者的免疫反应。