Fluoride exposure impairs glucose tolerance via decreased insulin expression and oxidative stress

被引:101
作者
Garcia-Montalvo, Eliud A. [1 ]
Reyes-Perez, Hugo [1 ]
Del Razo, Luz M. [1 ]
机构
[1] IPN, Dept Toxicol, Ctr Invest & Estudios Avanzados, Mexico City 07360, DF, Mexico
关键词
Insulin secretion; Insulin expression; Sodium fluoride; Pancreatic beta-cells; Mitochondrial membrane potential; Glibenclamide; PANCREATIC BETA-CELLS; SODIUM-FLUORIDE; INDUCED APOPTOSIS; C57BL/6J MOUSE; DRINKING-WATER; FLOW-CYTOMETRY; SOFT-TISSUES; BONE MASS; IN-VITRO; RATS;
D O I
10.1016/j.tox.2009.06.008
中图分类号
R9 [药学];
学科分类号
100702 [药剂学];
摘要
Chronic exposure to high fluoride (F-) may lead to local tissue disturbances, known as fluorosis. F- is an oxidising agent and a well-known reversible enzymatic inhibitor that interferes with the enzyme activity of at least 80 proteins. The goals of the current study were to evaluate whether F- exposure affected the oral glucose tolerance test (OGTT) in C57BL6 mice; and to determine the mechanisms at work in glucose homeostasis at the cellular level, in mouse pancreatic beta-cells (beta TC-6) exposed to F-. Mice received 45 mg l(-1) F-, as NaF, via drinking water, and cells were exposed for 12 h to NaF (equivalent to 0, 0.007, 0.045, 0.180, 1.35 or 2.26 mM F-) at a basal or stimulatory glucose concentration (2.8 or 16.6 mM, respectively). Mice showed marginal hyperglycemia an impaired glucose tolerance after 4 weeks of F- exposure, while beta-cells exposed to 1.35 and 2.26 mM F- had significantly lower insulin mRNA expression and subsequent secretion in the presence of the stimulatory glucose concentration. Western blot analyses did not show any alteration in the levels of glucose transporter-2 protein beta-cells on exposure to F- in vitro. However, oxidative stress evaluated by the functional activity of superoxide dismutase (SOD) and generation of the superoxide anion (O-2(-)), showed significantly decreased SOD activity, in a dose-dependent manner. This was accompanied by an increase in the generation of O-2(-), and decreased mitochondrial membrane potential in F- exposed cells. Insulin secretion was lower in beta-cells exposed to F-, even in the presence of glibenclamide, the ATP-sensitive K+ (K-ATP) channel blocker, suggesting down-regulation of the K-ATP channel in the cell. Exposure to high levels of F- in drinking water may decrease insulin mRNA and its secretion from beta-cells, and might therefore affect the OGTT. (C) 2009 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:75 / 83
页数:9
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