Insulin resistance is the first step in glucose intolerance and the development of type 2 diabetes mellitus, thus effective prevention strategies should also include dietary interventions to enhance insulin sensitivity. Nutrients, such as microelement chromium(III) and thiamine, play regulatory roles in carbohydrate metabolism. The objective of this study was to evaluate the insulin-sensitizing potential of the combined supplementary chromium(III) propionate complex (CrProp) and thiamine in insulin resistance animal model (rats fed a high-fructose diet). The experiment was carried out on 40 nine-week-old male Wistar rats divided into five groups (eight animals each). Animals were fed ad libitum: the control diet (AIN-93Â M) and high-fructose diets with and without a combination of two levels of CrProp (0.1 and 1Â mg Cr/kg body mass/day) and two levels of thiamine (0.5 and 10Â mg/kg body mass/day) for 8Â weeks. At the end of the experiment rats were sacrificed to collect blood and internal organs for analyses of blood biochemical and hematologic indices as well as tissular microelement levels that were measured using appropriate methods. It was found that both supplementary CrProp and thiamine (given alone) have significant insulin-sensitizing and moderate blood-lipid-lowering properties, while the combined supplementation with these agents does not give synergistic effects in insulin-resistant rats. CrProp given separately increased kidney Cu and Cr levels, while thiamine alone increased hepatic Cu contents and decreased renal Zn and Cu contents.
Effects of combined dietary chromium(III) propionate complex and thiamine supplementation on insulin sensitivity, blood biochemical indices, and mineral levels in high-fructose-fed rats.
膳食中添加丙酸铬(III)复合物和硫胺素补充剂对高果糖喂养大鼠胰岛素敏感性、血液生化指标和矿物质水平的影响
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作者:Król Ewelina, Krejpcio Zbigniew, Michalak SÅawomir, Wójciak RafaÅ W, BogdaÅski PaweÅ
| 期刊: | Biological Trace Element Research | 影响因子: | 3.600 |
| 时间: | 2012 | 起止号: | 2012 Dec;150(1-3):350-9 |
| doi: | 10.1007/s12011-012-9515-5 | 种属: | Rat |
| 研究方向: | 代谢 | ||
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