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不同天然和合成生物材料在牙髓组织工程中的适用性。

Suitability of Different Natural and Synthetic Biomaterials for Dental Pulp Tissue Engineering.

机构信息

1 Department of Conservative Dentistry and Periodontology, University Hospital Regensburg , Regensburg, Germany .

2 Department of Pharmaceutical Technology, University of Regensburg , Regensburg, Germany .

出版信息

Tissue Eng Part A. 2018 Feb;24(3-4):234-244. doi: 10.1089/ten.TEA.2016.0555. Epub 2017 Jul 20.

Abstract

Dental pulp tissue engineering is possible after insertion of pulpal stem cells combined with a scaffold into empty root canals. Commonly used biomaterials are collagen or poly(lactic) acid, which are either difficult to modify or to insert into such a narrow space. New hydrogel scaffolds with bioactive, specifically tailored functions could optimize the conditions for this approach. Different synthetic and natural hydrogels were tested for their suitability to engineer dental pulp. Two functionalized modifications of polyethylene glycol were developed in this study and compared to a self-assembling peptide, as well as to collagen and fibrin. Cell viability of dental pulp stem cells in test materials was assessed over two weeks. Cells in selected test materials laden with dentin-derived growth factors were inserted into human tooth roots and implanted subcutaneously into immunocompromised mice. In vitro cell culture exhibited distinct differences between scaffold types, where viability was significantly higher in natural compared to synthetic materials. In vivo experiments showed considerable differences regarding scaffold degradation, soft tissue formation, vascularization, and odontoblast-like cell differentiation. Fibrin appeared most suitable to enable generation of a pulp-like tissue and differentiation of cells into odontoblasts at the cell-dentin interface. In conclusion, natural materials, especially fibrin, proved to be superior compared to synthetic scaffolds regarding cell viability and dental pulp-like tissue formation.

摘要

牙髓组织工程是可能的,将牙髓干细胞与支架插入空的根管中。常用的生物材料是胶原蛋白或聚(乳酸)酸,它们要么难以修饰,要么难以插入到这样的狭窄空间中。具有生物活性、专门定制功能的新型水凝胶支架可以优化这种方法的条件。本研究测试了不同的合成和天然水凝胶,以评估其用于牙髓工程的适用性。本研究开发了两种功能化的聚乙二醇修饰物,并将其与自组装肽以及胶原蛋白和纤维蛋白进行了比较。在两周的时间内,评估了牙髓干细胞在测试材料中的细胞活力。将负载牙本质衍生生长因子的选定测试材料中的细胞插入人牙根中,并植入免疫功能低下的小鼠的皮下。体外细胞培养显示支架类型之间存在明显差异,天然材料的活力明显高于合成材料。体内实验表明,支架降解、软组织形成、血管化和成牙本质细胞样细胞分化方面存在显著差异。纤维蛋白似乎最适合在细胞-牙本质界面上产生牙髓样组织并将细胞分化为成牙本质细胞。总之,天然材料,尤其是纤维蛋白,在细胞活力和牙髓样组织形成方面优于合成支架。

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