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Dental pulp stem cells for in vivo bone regeneration: A systematic review of literature

机译:牙髓干细胞用于体内骨再生:文献综述

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Objective This review of literature was aimed to assess in vivo experiments which have evaluated the efficacy of dental pulp stem cells (DPSCs) for bone regeneration. Design An electronic search of English-language papers was conducted on PubMed database. Studies that assessed the use of DPSCs in bone regeneration in vivo were included and experiments evaluating regeneration of hard tissues other than bone were excluded. The retrieved articles were thoroughly reviewed according to the source of stem cell, cell carrier, the in vivo experimental model, defect type, method of evaluating bone regeneration, and the obtained results. Further assessment of the results was conducted by classifying the studies based on the defect type. Results Seventeen papers formed the basis of this systematic review. Sixteen out of 17 experiments were performed on animal models with mouse and rat being the most frequently used animal models. Seven out of 17 animal studies, contained subcutaneous pockets on back of the animal for stem cell implantation. In only one study hard tissue formation was not observed. Other types of defects used in the retrieved studies, included cranial defects and mandibular bone defects, in all of which bone formation was reported. Conclusion When applied in actual bone defects, DPSCs were capable of regenerating bone. Nevertheless, a precise conclusion regarding the efficiency of DPSCs for bone regeneration is yet to be made, considering the limited number of the in vivo experiments and the heterogeneity within their methods.
机译:目的这篇文献综述旨在评估体内实验,该实验评估了牙髓干细胞(DPSC)的骨再生功效。设计在PubMed数据库上进行了英语论文的电子搜索。包括评估在体内骨骼再生中使用DPSC的研究,排除了评估骨骼以外的硬组织再生的实验。根据干细胞的来源,细胞载体,体内实验模型,缺陷类型,评估骨再生的方法以及获得的结果,对检索到的文章进行了彻底的审查。通过根据缺陷类型对研究进行分类,对结果进行了进一步评估。结果十七篇论文构成了这一系统评价的基础。在17个实验中,有16个是在动物模型上进行的,其中老鼠和大鼠是最常用的动物模型。在17个动物研究中,有7个在动物背部装有皮下袋,用于干细胞植入。仅在一项研究中未观察到硬组织形成。在检索的研究中使用的其他类型的缺陷包括颅骨缺损和下颌骨缺损,所有这些都报告了骨形成。结论DPSC在实际的骨骼缺损中具有再生能力。然而,考虑到体内实验的数量有限以及其方法中的异质性,尚未有关于DPSC的骨再生效率的精确结论。

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