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氟化物的影响:两面神雅努斯。

Fluoride effects: the two faces of janus.

机构信息

Department of Genetics, Biology and Biochemistry, University of Torino, Italy.

出版信息

Curr Med Chem. 2010;17(22):2431-41. doi: 10.2174/092986710791698503.

Abstract

The behavior of fluoride ions in the human organism is a classic example of double-edged sword. On the one hand the daily supplementation with fluoride is undoubtedly an important preventing factor in protecting teeth from caries, and, as an important mitogenic stimulus for osteoblasts, it may enhance mineral deposition in bone, but on the other hand fluoride, above a threshold concentration, has been demonstrated to be toxic. We present here a brief review of fluoride metabolism and exposure, its use in caries prevention and its effects on bone, followed by an updating about the main hypotheses concerning its mechanism of action and toxicity. The effects of fluoride have been related mainly to its ability to evoke the activation of G proteins and the inhibition of phosphotyrosine phosphatases, leading to an intracellular increase of tyrosine phosphorylation and activation of the mitogen-activated protein kinase pathway, and its capacity to cause generation of reactive oxygen species. We present also a unifying hypothesis accounting for these apparently different effects, although the available experimental models and conditions are highly variable in the literature. A lot of experiments still need to be performed to clarify the positive and negative effects of fluoride. Finding the mechanisms accounting for fluoride toxicity is an important point: indeed, the use of fluoride has been proposed in the preparation of new biomaterials to be inserted in the bone, in order to improve their stable and safe integration.

摘要

氟离子在人体中的行为是一把双刃剑的典型例子。一方面,每天补充氟化物无疑是保护牙齿免受龋齿的重要预防因素,而且作为成骨细胞的重要有丝分裂刺激物,它可以促进骨矿物质沉积,但另一方面,氟化物在超过阈值浓度时已被证明具有毒性。我们在这里简要回顾了氟化物的代谢和暴露,它在龋齿预防中的应用及其对骨骼的影响,然后更新了关于其作用机制和毒性的主要假设。氟化物的作用主要与其激活 G 蛋白和抑制磷酸酪氨酸磷酸酶的能力有关,导致细胞内酪氨酸磷酸化增加和丝裂原激活蛋白激酶途径的激活,以及其产生活性氧的能力。我们还提出了一个统一的假说,解释了这些看似不同的作用,尽管文献中的实验模型和条件高度可变。为了阐明氟化物的积极和消极影响,还需要进行大量的实验。找到氟化物毒性的机制是一个重要的问题:事实上,已经提出在制备要插入骨骼的新生物材料时使用氟化物,以改善其稳定和安全的整合。

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