Lucas P A, Ophaug R H, Singer L
Connect Tissue Res. 1984;13(1):17-26. doi: 10.3109/03008208409152139.
The effects of fluoride intake and vitamin A deficiency on glycosaminoglycan metabolism in vivo were investigated. Weanling female rats were fed either a vitamin A deficient diet ad libitum, a vitamin A supplemented diet pair-fed to the deficient animals, or the vitamin A supplemented diet ad libitum. Additionally, each vitamin A dietary group was divided into three subgroups with the animals receiving water containing 0, 10 or 50 ppm fluoride. The results showed that the groups receiving 10 and 50 ppm fluoride at all dietary levels of vitamin A had significantly higher in vivo 35SO4 incorporation in both the epiphyseal and diaphyseal regions of the bone than the animals receiving 0 ppm fluoride. The vitamin A deficient animals incorporated significantly less 35SO4 into glycosaminoglycans in the epiphyseal and diaphyseal regions of the bone compared to the pair-fed, vitamin A sufficient animals for all three fluoride receiving groups. There was no interaction between fluoride intake and dietary vitamin A levels on 35SO4 incorporation into glycosaminoglycans. Fluoride either increased sulfation or turnover of glycosaminoglycans.
研究了氟摄入和维生素A缺乏对体内糖胺聚糖代谢的影响。将断乳雌性大鼠随意喂食维生素A缺乏饮食、与缺乏维生素A的动物配对喂食的维生素A补充饮食或随意喂食维生素A补充饮食。此外,每个维生素A饮食组又分为三个亚组,动物分别饮用含0、10或50 ppm氟的水。结果表明,在所有维生素A饮食水平下,摄入10和50 ppm氟的组在骨的骨骺和骨干区域的体内35SO4掺入量显著高于摄入0 ppm氟的动物。与配对喂食、维生素A充足的动物相比,在所有三个氟摄入组中,维生素A缺乏的动物在骨的骨骺和骨干区域的糖胺聚糖中掺入的35SO4显著减少。氟摄入量和饮食维生素A水平对35SO4掺入糖胺聚糖没有相互作用。氟要么增加糖胺聚糖的硫酸化,要么增加其周转率。