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使用牙周组织三维体外模型评估牙周膜成纤维细胞球体的成骨和成牙骨质潜力

Evaluation of Osteogenic and Cementogenic Potential of Periodontal Ligament Fibroblast Spheroids Using a Three-Dimensional In Vitro Model of Periodontium.

作者信息

Berahim Zurairah, Moharamzadeh Keyvan, Jowett Adrian K, Rawlinson Andrew

机构信息

School of Dental Sciences, University of Science, 16150 Kubang Kerian, Kelantan, Malaysia.

School of Clinical Dentistry, University of Sheffield, Sheffield S10 2TA, UK.

出版信息

Int J Dent. 2015;2015:605813. doi: 10.1155/2015/605813. Epub 2015 Nov 8.

Abstract

The aim of this study was to develop a three-dimensional in vitro model of periodontium to investigate the osteogenic and cementogenic differentiation potential of the periodontal ligament fibroblast (PDLF) spheroids within a dentin-membrane complex. PDLFs were cultured in both spheroid forms and monolayers and were seeded onto two biological collagen-based and synthetic membranes. Cell-membrane composites were then transferred onto dentin slices with fibroblasts facing the dentin surface and further cultured for 20 days. The composites were then processed for histology and immunohistochemical analyses for osteocalcin, Runx2, periostin, and cementum attachment protein (CAP). Both membranes seeded with PDLF-derived cells adhered to dentin and fibroblasts were present at the dentin interface and spread within both membranes. All membrane-cell-dentine composites showed positive staining for osteocalcin, Runx2, and periostin. However, CAP was not expressed by any of the tissue composites. It can be concluded that PDLFs exhibited some osteogenic potential when cultured in a 3D matrix in the presence of dentin as shown by the expression of osteocalcin. However the interaction of cells and dentin in this study was unable to stimulate cementum formation. The type of membrane did not have a significant effect upon differentiation, but fibroblast seeded-PGA membrane demonstrated better attachment to dentin than the collagen membrane.

摘要

本研究的目的是建立一种牙周组织的三维体外模型,以研究牙本质 - 膜复合物中牙周膜成纤维细胞(PDLF)球体的成骨和牙骨质生成分化潜能。将PDLF培养成球体形式和单层形式,并接种到两种基于生物胶原蛋白和合成的膜上。然后将细胞 - 膜复合物转移到牙本质切片上,使成纤维细胞面向牙本质表面,并进一步培养20天。然后对复合物进行组织学处理以及针对骨钙素、Runx2、骨膜蛋白和牙骨质附着蛋白(CAP)的免疫组织化学分析。接种有PDLF衍生细胞的两种膜均粘附于牙本质,成纤维细胞存在于牙本质界面并在两种膜内扩散。所有膜 - 细胞 - 牙本质复合物对骨钙素、Runx2和骨膜蛋白均呈阳性染色。然而,任何组织复合物均未表达CAP。可以得出结论,如骨钙素的表达所示,当在存在牙本质的三维基质中培养时,PDLF表现出一定的成骨潜能。然而,本研究中细胞与牙本质的相互作用未能刺激牙骨质形成。膜的类型对分化没有显著影响,但接种有成纤维细胞的聚乙醇酸(PGA)膜比胶原膜对牙本质的附着性更好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c370/4655058/a20d30753017/IJD2015-605813.001.jpg

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