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首页> 外文期刊>Biological trace element research >Effect of fluoride and low versus high levels of dietary calcium on mRNA expression of osteoprotegerin and osteoprotegerin ligand in the bone of rats
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Effect of fluoride and low versus high levels of dietary calcium on mRNA expression of osteoprotegerin and osteoprotegerin ligand in the bone of rats

机译:氟和高钙饮食对大鼠骨骼中骨保护素和骨保护素配体mRNA表达的影响

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The ratio of osteoprotegerin ligand (OPGL) to osteoprotegerin (OPG) determines the delicate balance between bone resorption and synthesis. The main objective of the present study is to investigate the possible role of OPGL and OPG in the bone metabolism of rats exposed to fluoride and the protective or aggravating effect of calcium (Ca). In a 6-month study, 270 weanling male Sprague-Dawley rats weighing between 70 and 90 g were divided randomly into six groups of 45 rats in each group. Three groups (groups I, III, and V)served as controls and drank deionized water and were fed purified rodent diets containing either 1,000 mg Ca/kg (low Ca), 5,000 mg Ca/kg (normal Ca), or 20,000 mg Ca/kg (high Ca). The three experimental groups (groups II, IV, and VI) were given the same diets but they drank water containing 100 mg F ion/L (from NaF). Every 2 months 15 rats were randomly selected from each group and sacrificed for the study. The ratio of OPGL mRNA to OPG mRNA was significantly increased by the sixth month in the distal femur joints of the F-exposed rats. Serum tartrate-resistant acid phosphatase activity and serum calcitonin activity in the F-exposed groups was increased, although changes were not apparent in the serum alkaline phosphatase or Gla-containing proteins, especially in the low calcium and high calcium diet F-exposed groups. The results indicated that OPG and OPGL may play important roles in skeletal fluorosis, and that fluoride may enhance osteoclast formation and induce osteoclastic bone destruction. A high Ca diet did not play a protective role, but rather may aggravate the damage of fluoride.
机译:骨保护素配体(OPGL)与骨保护素(OPG)的比例决定了骨吸收与合成之间的微妙平衡。本研究的主要目的是研究OPGL和OPG在暴露于氟化物的大鼠骨骼代谢中的可能作用以及钙(Ca)的保护或加重作用。在为期6个月的研究中,将270只体重在70至90 g之间的雄性Sprague-Dawley雄性大鼠随机分为6组,每组45只。三组(I,III和V组)用作对照组并喝去离子水,并喂以含有1,000 mg Ca / kg(低钙),5,000 mg Ca / kg(正常Ca)或20,000 mg Ca的纯净啮齿动物饮食/ kg(高钙)。三个实验组(第II,IV和VI组)的饮食相同,但是他们喝了含100 mg F ion / L(来自NaF)的水。每2个月从每组中随机选择15只大鼠并处死以进行研究。在暴露于F的大鼠的股骨远端关节中,到第六个月,OPGL mRNA与OPG mRNA的比例显着增加。 F暴露组的抗酒石酸酸性磷酸酶活性和血清降钙素活性增加,尽管血清碱性磷酸酶或含Gla蛋白,特别是低钙和高钙饮食F暴露组,变化不明显。结果表明,OPG和OPGL可能在骨骼氟中毒中起重要作用,而氟化物可以促进破骨细胞形成并诱导破骨细胞破坏。高钙饮食没有起到保护作用,但是可能加剧氟化物的损害。

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