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牙骨质和骨提取物对人牙周膜成纤维细胞的生物学效应。

Biological effects of cementum and bone extracts on human periodontal fibroblasts.

作者信息

Hou L T, Liu C M, Lei J Y, Wong M Y, Chen J K

机构信息

Department of Periodontology, School of Dentistry, National Taiwan University, Taipei.

出版信息

J Periodontol. 2000 Jul;71(7):1100-9. doi: 10.1902/jop.2000.71.7.1100.

Abstract

BACKGROUND

Non-collagenous proteins of mineralized tissues play important roles in bone induction during mineralization and in regulating the activity of many types of mesenchymal cells. This study was conducted to determine the effects of acetic acid extracts of bone and cementum on alkaline phosphatase (ALPase) activity and in vitro mineralization of cultured human periodontal fibroblasts (hPF).

METHODS

Alveolar bone and cementum obtained from clinically healthy subjects were extracted by a solution containing 0.5 M acetic acid and enzyme inhibitors. Osteoblastic phenotypes of hPF were assayed by ALPase activity, gene expression of bone marker proteins, and the ability to produce in vitro mineralization in culture media containing 50 microg/ml ascorbic acid, 10 mM sodium beta-glycerophosphate, and 10(-7) M dexamethasone. The effects of cementum and bone extracts on the expression of osteoblastic phenotypes in hPF were also determined.

RESULTS

Many protein components, varying in molecular weight from 10 to 14 to 120 kDa, were detectable in 10% SDS-PAGE of both cementum and alveolar bone extracts. The hPF cells were found to exhibit a moderate ALPase activity when compared with rat osteosarcoma (ROS) 17/2.8 cells under the same experimental conditions. Gene expression for ALPase, osteocalcin bone sialoprotein, osteopontin, and BMP-7 at mRNA message was detected by RT-PCR in hPF and ROS 17/2.8 cells. The confluent hPF and ROS 17/2.8 cells showed evidence of calcium deposition in the extracellular milieu at 30 and 15 to 30 days' cultures, respectively, under a mineralization medium. The hPF appeared to form mineralized foci with morphological characteristics different from the mineralized nodules produced by ROS 17/2.8 cells. The addition of low concentrations (5 microg/ml) of either cementum or bone extract produced an increase in the size and number of mineralization spots, as well as greater ALPase activity in both hPF and ROS 17/2.8 cultures during the observation periods.

CONCLUSIONS

These results suggest that hPF possess certain mineralizing phenotypes, and that acetic acid extracts of bone and cementum contain components capable of stimulating osteogenic differentiation of hPF.

摘要

背景

矿化组织的非胶原蛋白在矿化过程中的骨诱导以及调节多种间充质细胞的活性方面发挥着重要作用。本研究旨在确定骨和牙骨质的乙酸提取物对培养的人牙周成纤维细胞(hPF)碱性磷酸酶(ALPase)活性和体外矿化的影响。

方法

从临床健康受试者获取的牙槽骨和牙骨质用含有0.5 M乙酸和酶抑制剂的溶液进行提取。通过ALPase活性、骨标志物蛋白的基因表达以及在含有50 μg/ml抗坏血酸、10 mMβ-甘油磷酸钠和10⁻⁷ M地塞米松的培养基中产生体外矿化的能力来检测hPF的成骨细胞表型。还确定了牙骨质和骨提取物对hPF中成骨细胞表型表达的影响。

结果

在牙骨质和牙槽骨提取物的10% SDS-PAGE中可检测到许多蛋白质成分,分子量在10至14 kDa至120 kDa之间变化。发现在相同实验条件下,与大鼠骨肉瘤(ROS)17/2.8细胞相比,hPF细胞表现出中等程度的ALPase活性。通过RT-PCR在hPF和ROS 17/2.8细胞中检测到ALPase、骨钙素、骨唾液蛋白、骨桥蛋白和BMP-7在mRNA水平的基因表达。在矿化培养基中,汇合的hPF和ROS 17/2.8细胞分别在培养30天和15至30天时显示出细胞外环境中钙沉积的证据。hPF似乎形成了矿化灶,其形态特征与ROS 17/2.8细胞产生的矿化结节不同。在观察期内,添加低浓度(5 μg/ml)的牙骨质或骨提取物会使hPF和ROS 17/2.8培养物中矿化斑点的大小和数量增加,以及ALPase活性增强。

结论

这些结果表明hPF具有某些矿化表型,并且骨和牙骨质的乙酸提取物含有能够刺激hPF成骨分化的成分。

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