Epidemiological investigations indicate that certain ingredients in tea bricks can antagonize the adverse effects of fluoride. Tea polyphenols (TPs), the most bioactive ingredient in tea bricks, have been demonstrated to be potent bone-supporting agents. ClCâ7 is known to be crucial for osteoclast (OC) bone resorption. Thus, in this study, we investigated the potential protective effects of TPs against fluorosis using a mouse model and explored the underlying mechanisms with particular focus on ClCâ7. A total of 40, healthy, 3âweekâold male C57BL/6 mice were randomly divided into 4 groups (n=10/group) by weight as follows: distilled water (control group), 100 mg/l fluoridated water (F group), water containing 10 g/l TPs (TP group) and water containing 100 mg/l fluoride and 10 g/l TPs (F + TP group). After 15 weeks, and after the mice were sacrificed, the long bones were removed and bone marrow-derived macrophages were cultured ex vivo in order to perform several experiments. OCs were identified and counted by tartrateâresistant acid phosphatase (TRAP) staining. The consumption of fluoride resulted in severe fluorosis and in an impaired OC function [impaired bone resorption, and a low mRNA expression of nuclear factor of activated T-cells 1 (NFATc1), ATPase H+ transporting V0 subunit D2 (ATP6v0d2) and osteopetrosisâassociated transmembrane protein 1 (Ostm1)]. In the F + TP group, fluorosis was attenuated and OC function was restored, but not the high bone fluoride content. Compared with the F group, mature OCs in the F + TP group expressed higher mRNA levels of ClCâ7 and Ostm1; the transportation and retaining of Clâ was improved, as shown by the fluorescence intensity experiment. On the whole, our findings indicate that TPs mitigate fluorosis in C57BL/6 mice by regulating OC bone resorption. Fluoride inhibits OC resorption by inhibiting ClCâ7 and Ostm1, whereas TPs attenuate this inhibitory effect of fluoride.
ClC-7/Ostm1 contribute to the ability of tea polyphenols to maintain bone homeostasis in C57BL/6 mice, protecting against fluorosis.
ClC-7/Ostm1 有助于茶多酚维持 C57BL/6 小鼠的骨骼稳态,从而防止氟中毒
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作者:Li Bing-Yun, Gao Yan-Hui, Pei Jun-Rui, Yang Yan-Mei, Zhang Wei, Sun Dian-Jun
| 期刊: | International Journal of Molecular Medicine | 影响因子: | 5.800 |
| 时间: | 2017 | 起止号: | 2017 May;39(5):1155-1163 |
| doi: | 10.3892/ijmm.2017.2933 | 研究方向: | 骨科研究 |
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