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地塞米松在体外增强氟化物对人TE85骨肉瘤细胞的成骨作用。

Dexamethasone enhances the osteogenic effects of fluoride in human TE85 osteosarcoma cells in vitro.

作者信息

Takada J, Chevalley T, Baylink D J, Lau K H

机构信息

Mineral Metabolism Unit (151), Jerry L. Pettis Memorial V.A. Medical Center, 11201 Benton Street, Loma Linda, CA 92357, USA.

出版信息

Calcif Tissue Int. 1996 May;58(5):355-61. doi: 10.1007/BF02509385.

Abstract

The in vitro osteogenic effects of fluoride have not always been consistently observed in human bone cells. The present study sought to test if dexamethasone (Dex) could potentiate the action of fluoride to increase the detectability of the stimulatory effects of fluoride on [3H]thymidine incorporation, alkaline phosphatase (ALP) specific activity, collagen synthesis, and osteocalcin secretion in human TE85 osteosarcoma cells. Neither Dex at 10(-10)-10(-6) M or fluoride at a mitogenic dose (100 microM) had any consistent stimulatory effects on thymidine incorporation. When the cells were treated with both agents simultaneously, significant and highly reproducible stimulations were observed. The mitogenic effects of the two agents were confirmed with cell number counting. Analysis of variance (ANOVA) revealed a significant interaction (P < 0.001) between fluoride and Dex on cell proliferation. The enhancing effect of Dex on [3H]thymidine incorporation was not due to a shift of the optimal dose response of fluoride. Though fluoride alone or Dex alone also had no consistent effect on ALP specific activity, the co-treatment with fluoride and Dex for 24 hours produced significant (P < 0.001, ANOVA) stimulation in ALP specific activity. Fluoride alone had no consistent effect on collagen synthesis and on 1, 25(OH)2D3-dependent osteocalcin secretion, whereas Dex treatment consistently inhibited these two osteoblastic parameters in a dose-dependent manner. However, both the collagen synthesis and osteocalcin secretion rates were significantly higher (P < 0.001 ANOVA for each) when the cells were co-treated with Dex and fluoride (100 microM) than when they were treated with Dex alone. Thus, these data indicate that the response in collagen synthesis and osteocalcin secretion to fluoride stimulation was more readily observed in the presence of Dex than in its absence. ANOVA analysis revealed that the interaction between fluoride and Dex on collagen synthesis, but not the 1,25(OH)2D3-dependent osteocalcin secretion, was significant (P < 0.02). In summary, we have demonstrated for the first time that in TE85 cells (1) Dex potentiated the effects of fluoride on cell proliferation, ALP specific activity, and collagen synthesis; (2) while Dex at 10(-7)-10(-6) M alone inhibited the collagen synthesis and at 10(-9)-10(-6) M reduced osteocalcin secretion, Dex at 10(-8)-10(-6) M significantly stimulated the proliferation of TE85 cells; and (3) Dex interacted with fluoride to increase the percentage of experiments showing an osteogenic action of fluoride. In conclusion, the in vitro osteogenic actions of fluoride in human TE85 cells are more consistently observed in the presence than in the absence of Dex.

摘要

在人体骨细胞中,并非总能一致观察到氟化物的体外成骨作用。本研究旨在测试地塞米松(Dex)是否能增强氟化物的作用,以提高氟化物对人TE85骨肉瘤细胞中[3H]胸苷掺入、碱性磷酸酶(ALP)比活性、胶原蛋白合成及骨钙素分泌的刺激作用的可检测性。10^(-10) - 10^(-6) M的Dex或促有丝分裂剂量(100 μM)的氟化物对胸苷掺入均无一致的刺激作用。当细胞同时用这两种试剂处理时,观察到显著且高度可重复的刺激作用。通过细胞计数证实了这两种试剂的促有丝分裂作用。方差分析(ANOVA)显示氟化物和Dex在细胞增殖方面存在显著交互作用(P < 0.001)。Dex对[3H]胸苷掺入的增强作用并非由于氟化物最佳剂量反应的改变。虽然单独使用氟化物或Dex对ALP比活性也无一致影响,但氟化物和Dex共同处理24小时可显著(P < 0.001,ANOVA)刺激ALP比活性。单独使用氟化物对胶原蛋白合成及1,25(OH)2D3依赖性骨钙素分泌无一致影响,而Dex处理则以剂量依赖性方式持续抑制这两个成骨细胞参数。然而,当细胞用Dex和氟化物(100 μM)共同处理时,胶原蛋白合成和骨钙素分泌率均显著高于单独用Dex处理时(每项P < 0.001,ANOVA)。因此,这些数据表明,与不存在Dex时相比,存在Dex时更易观察到胶原蛋白合成和骨钙素分泌对氟化物刺激的反应。ANOVA分析显示氟化物和Dex在胶原蛋白合成方面存在显著交互作用(P < 0.02),但在1,25(OH)2D3依赖性骨钙素分泌方面不存在。总之,我们首次证明在TE85细胞中:(1)Dex增强了氟化物对细胞增殖、ALP比活性和胶原蛋白合成的作用;(2)虽然10^(-7) - 10^(-6) M的Dex单独抑制胶原蛋白合成,10^(-9) - 10^(-6) M的Dex降低骨钙素分泌,但10^(-8) - 10^(-6) M的Dex显著刺激TE85细胞增殖;(3)Dex与氟化物相互作用,增加了显示氟化物有成骨作用的实验百分比。总之,在人TE85细胞中,存在Dex时比不存在Dex时更能一致观察到氟化物的体外成骨作用。

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