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首页> 外文期刊>Journal of biochemical and molecular toxicology >Proteomic analysis of urine in rats chronically exposed to fluoride.
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Proteomic analysis of urine in rats chronically exposed to fluoride.

机译:长期暴露于氟化物的大鼠尿液的蛋白质组学分析。

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摘要

Urine is an ideal source of materials to search for potential disease-related biomarkers as it is produced by the affected tissues and can be easily obtained by noninvasive methods. 2-DE-based proteomic approach was used to better understand the molecular mechanisms of injury induced by fluoride (F(-)) and define potential biomarkers of dental fluorosis. Three groups of weanling male Wistar rats were treated with drinking water containing 0 (control), 5, or 50 ppm F(-) for 60 days (n = 15/group). During the experimental period, the animals were kept individually in metabolic cages, to analyze the water and food consumption, as well as fecal and urinary F(-) excretion. Urinary proteome profiles were examined using 2-DE and Colloidal Coomassie Brilliant Blue staining. A dose-response regarding F(-) intake and excretion was detected. Quantitative intensity analysis revealed 8, 11, and 8 significantly altered proteins between control vs. 5 ppm F(-), control vs. 50 ppm F(-) and 5 ppm F(-) vs. 50 ppm F(-) groups, respectively. Two proteins regulated by androgens (androgen-regulated 20-KDa protein and alpha-2mu-globulin) and one related to detoxification (aflatoxin-B1-aldehyde-reductase) were identified by MALDI-TOF-TOF MS/MS. Thus, proteomic analysis can help to better understand the mechanisms underlying F(-) toxicity, even in low doses.
机译:尿是寻找潜在疾病相关生物标志物的理想材料,因为它是由受影响的组织产生的,并且可以通过无创方法轻松获得。基于2-DE的蛋白质组学方法被用来更好地理解氟化物(F(-))诱导的损伤的分子机制,并定义了氟牙症的潜在生物标记。将三组断奶的雄性Wistar大鼠用含0(对照组),5或50 ppm F(-)的饮用水处理60天(n = 15 /组)。在实验期间,将动物分别关在代谢笼中,以分析水和食物的消耗量以及粪便和尿中F(-)的排泄。使用2-DE和胶体考马斯亮蓝染色检查尿液蛋白质组谱。检测到有关F(-)摄入和排泄的剂量反应。定量强度分析显示,对照组与5 ppm F(-),对照组与50 ppm F(-)和5 ppm F(-)与50 ppm F(-)组之间的蛋白质有8、11和8个显着改变,分别。通过MALDI-TOF-TOF MS / MS鉴定了两种受雄激素调节的蛋白质(雄激素调节的20-KDa蛋白和α-2mu-球蛋白)和一种与排毒有关的蛋白质(黄曲霉毒素-B1-醛还原酶)。因此,蛋白质组学分析可以帮助更好地理解F(-)毒性的潜在机制,即使在低剂量下也是如此。

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