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氟化物对Wistar大鼠脑及外周组织中[H]葡萄糖摄取的影响

Fluoride Alteration of [H]Glucose Uptake in Wistar Rat Brain and Peripheral Tissues.

作者信息

Rogalska Anna, Kuter Katarzyna, Żelazko Aleksandra, Głogowska-Gruszka Anna, Świętochowska Elżbieta, Nowak Przemysław

机构信息

Department of Toxicology and Health Protection, School of Public Health in Bytom, Medical University of Silesia, Piekarska 18, 41-902, Bytom, Poland.

Department of Neuro-Psychopharmacology, Institute of Pharmacology, Polish Academy of Sciences, Smetna 12, 31-343, Kraków, Poland.

出版信息

Neurotox Res. 2017 Apr;31(3):436-443. doi: 10.1007/s12640-017-9709-x. Epub 2017 Feb 27.

Abstract

The present study was designed to investigate the role of postnatal fluoride intake on [3H]glucose uptake and transport in rat brain and peripheral tissues. Sodium fluoride (NaF) in a concentration of 10 or 50 ppm was added to the drinking water of adult Wistar rats. The control group received distilled water. After 4 weeks, respective plasma fluoride levels were 0.0541 ± 0.0135 μg/ml (control), 0.0596 ± 0.0202 μg/ml (10 ppm), and 0.0823 ± 0.0199 μg/ml (50 ppm). Although plasma glucose levels were not altered in any group, the plasma insulin level in the fluoride (50 ppm) group was elevated (0.72 ± 0.13 μg/ml) versus the control group (0.48 ± 0.24 μg/ml) and fluoride (10 ppm) group. In rats receiving fluoride for 4 weeks at 10 ppm in drinking water, [3H]glucose uptake was unaltered in all tested parts of the brain. However, in rats receiving fluoride at 50 ppm, [3H]glucose uptake in cerebral cortex, hippocampus, and thalamus with hypothalamus was elevated, versus the saline group. Fluoride intake had a negligible effect on [3H]glucose uptake by peripheral tissues (liver, pancreas, stomach, small intestine, atrium, aorta, kidney, visceral tissue, lung, skin, oral mucosa, tongue, salivary gland, incisor, molars, and jawbone). In neither fluoride group was glucose transporter proteins 1 (GLUT 1) or 3 (GLUT 3) altered in frontal cortex and striatum versus control. On the assumption that increased glucose uptake (by neural tissue) reasonably reflects neuronal activity, it appears that fluoride damage to the brain results in a compensatory increase in glucose uptake and utilization without changes in GLUT 1 and GLUT 3 expression.

摘要

本研究旨在探讨出生后氟摄入对大鼠脑和外周组织中[³H]葡萄糖摄取及转运的作用。将浓度为10或50 ppm的氟化钠(NaF)添加到成年Wistar大鼠的饮用水中。对照组饮用蒸馏水。4周后,各血浆氟水平分别为0.0541±0.0135μg/ml(对照组)、0.0596±0.0202μg/ml(10 ppm组)和0.0823±0.0199μg/ml(50 ppm组)。尽管任何组的血浆葡萄糖水平均未改变,但氟(50 ppm)组的血浆胰岛素水平相对于对照组(0.48±0.24μg/ml)和氟(10 ppm)组升高(0.72±0.13μg/ml)。在饮用水中含10 ppm氟的大鼠中,给予4周氟后,脑的所有测试部位[³H]葡萄糖摄取均未改变。然而,在给予50 ppm氟的大鼠中,与生理盐水组相比,大脑皮层、海马体以及丘脑与下丘脑的[³H]葡萄糖摄取增加。氟摄入对周围组织(肝脏、胰腺、胃、小肠、心房、主动脉、肾脏、内脏组织、肺、皮肤、口腔黏膜、舌头、唾液腺、门齿、臼齿和颌骨)的[³H]葡萄糖摄取影响可忽略不计。在额叶皮层和纹状体中,与对照组相比,两个氟组的葡萄糖转运蛋白1(GLUT 1)或3(GLUT 3)均未改变。假设(神经组织)葡萄糖摄取增加合理反映神经元活动,那么似乎氟对脑的损伤导致葡萄糖摄取和利用的代偿性增加,而GLUT 1和GLUT 3表达无变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3055/5360833/3700149381ee/12640_2017_9709_Fig1_HTML.jpg

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