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牙周膜干细胞的特征。

Characterization of stem cells from alveolar periodontal ligament.

机构信息

Department of Orthodontics, School of Stomatology, the Fourth Military Medical University, Xi'an, Shaanxi, People's Republic of China.

出版信息

Tissue Eng Part A. 2011 Apr;17(7-8):1015-26. doi: 10.1089/ten.tea.2010.0140. Epub 2010 Dec 27.

Abstract

Complete and predicable regeneration of complex periodontal structures, which include cementum, periodontal ligament (PDL), and alveolar bone, has been a great challenge for periodontal researchers. It is generally believed that human PDL from the root surface contains stem cells (r-PDLSCs), which can enhance cementum/PDL-like tissues regeneration in vivo. In this work, PDL was found to possess asymmetrically distributed stem cells observed by long-term bromodeoxyuridine (BrdU) labeling. Putative stem cells from human PDL on the alveolar bone surface (a-PDLSCs) were then isolated and characterized. It was shown that a-PDLSCs exhibited strong proliferation capability and expressed high percentages of mesenchymal stem cell markers. Comparatively, a-PDLSCs had higher multilineage differentiation potential than r-PDLSCs with regard to both osteogenic and adipogenic differentiation. Alkaline phosphatase activity and the expression of mineralization-related markers of a-PDLSCs were also higher than those of r-PDLSCs. In vivo, a-PDLSCs could regenerate bone/PDL-like structures and repair critical-size defects created in calvarial bone of NOD/SCID mice. Autologous PDLSC-mediated periodontal regeneration showed that a-PDLSCs could accomplish reconstruction of alveolar bone more perfectly than r-PDLSCs. Our data suggest that PDLSCs may have quite different characteristics depending on locations. a-PDLSCs may take a synergistic effect with r-PDLSCs in periodontal regeneration.

摘要

牙周组织包括牙骨质、牙周膜(PDL)和牙槽骨,完整且可预测的再生一直是牙周研究人员面临的巨大挑战。人们普遍认为,来源于根面的人牙周膜(r-PDLSCs)含有干细胞,可促进体内牙骨质/牙周样组织的再生。本研究通过长期 BrdU 标记发现,PDL 具有不对称分布的干细胞。然后从牙槽骨表面分离和鉴定人牙周膜中的干细胞(a-PDLSCs)。结果表明,a-PDLSCs 具有较强的增殖能力,并表达较高比例的间充质干细胞标志物。与 r-PDLSCs 相比,a-PDLSCs 具有更高的多向分化潜能,其成骨和成脂分化潜能均较高。碱性磷酸酶活性和矿化相关标志物的表达也高于 r-PDLSCs。体内实验表明,a-PDLSCs 可在 NOD/SCID 小鼠颅骨缺损处再生骨/牙周样结构并修复临界大小的缺损。自体 PDLSC 介导的牙周再生表明,a-PDLSCs 在牙槽骨重建方面的效果优于 r-PDLSCs。我们的数据表明,PDLSCs 的特性可能因位置而异。a-PDLSCs 可能与 r-PDLSCs 在牙周再生中发挥协同作用。

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