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首页> 外文期刊>International journal of environmental health research >The adverse effects of perinatal exposure to nonylphenol on carbohydrate metabolism in male offspring rats
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The adverse effects of perinatal exposure to nonylphenol on carbohydrate metabolism in male offspring rats

机译:围产暴露对壬基酚对雄性后代大鼠碳水化合物代谢的不利影响

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Background: We sought to investigate the adverse effects of perinatal exposure to nonylphenol (NP) on carbohydrate metabolism of male offspring rats. Methods: Thirty-two healthy pregnant Sprague Dawley rats were randomly divided into four groups, control normal diet group (C), NP normal diet group (NPN), control high-energy diet group (CH), and NP high-energy diet group (NPH). Both of the control groups were received a gavage of corn oil and the NP-groups were received NP (200 mg/kg/day) from gestational days 6 to post-natal day (PND) 21. The concentrations of NP in pancreatic tissues were measured by high-performance liquid chromatography (HPLC). The key genes of glucose metabolism expression were detected by reverse transcription-polymerase chain reaction (RT-PCR). The pancreatic tissues were stained with hematoxylin/eosin (HE). Results: On PND 1, the body weights of male pups in the NPN and NPH groups were lower than those of the CH group (p = 0.012 and 0.001, respectively). On PND 30, the body weight of male pups from the NPH group was elevated compared with the C group (p = 0.019), while the body weights of male pups in the NPN and NPH groups were elevated compared to the CH group (p = 0.034 and 0.004, respectively). On PND 60, the body weights of NPN and NPH pups were higher than those in the C (p < 0.001) and CH groups (p < 0.001). The levels of fasting blood glucose (FBG) were increased significantly in the animals treated with NP compared to control animals (F = 29.14, p < 0.001). The FBG levels in the treatment groups are ranked as follows: NPH > NPN > CH > C (p < 0.05). The concentrations of NP in pancreas tissues in both the NPN (2045.0 +/- 130.1 mu g/L) and NPH groups (2038.0 +/- 104.2 mu g/L) were higher than those in the C (499.5 +/- 27.4 mu g/L) and CH groups (494.2 +/- 22.4 mu g/L; p < 0.05). Morphological examination of tissues from rats exposed to NP shown that the NP-treated groups appeared to have a higher degree of inflammatory injury, edema, and focal necrotic cells in the pancreatic tissues. Compared with C group, expression of glucokinase (GCK) was down-regulated, while Uncoupling protein-2 (UCP-2) was up-regulated in the NP-treated groups (F-GCK = 218.89, p < 0.001; FUCP-2 = 18.82, p < 0.001). Conclusions: Prenatal exposure to NP could induce glucose metabolism disorder in male F1 rats, which may be due to the fact that NP induces abnormal expression patterns of GCK and UCP-2.
机译:背景:我们试图探讨围产期暴露于壬基酚(NP)对雄性后代大鼠碳水化合物代谢的不利影响。方法:三十二次健康孕妇Sprague Dawley大鼠随机分为四组,控制正常饮食组(C),NP正常饮食组(NPN),控制高能饮食组(CH),以及NP高能量饮食组(NPH)。接受了两种对照组的玉米油的饲养,并且将NP-基团从妊娠期6天接受NP(200mg / kg /天)至产后日(PND)21。胰腺组织中NP的浓度是通过高效液相色谱(HPLC)测量。通过逆转录 - 聚合酶链反应(RT-PCR)检测葡萄糖代谢表达的关键基因。胰腺组织用苏木精/曙红(HE)染色。结果:在PND 1上,NPN和NPH基团中雄性幼崽的体重低于CH组(P = 0.012和0.001)。在PND 30上,与C组比较(P = 0.019)升高来自NPH组的雄性幼崽的体重(P = 0.019),而与CH组相比,NPN和NPH基团中的雄性幼崽的体重升高(P = 0.034和0.004分别)。在PND 60中,NPN和NPH幼崽的体重高于C(P <0.001)和CH基团(P <0.001)。与对照动物相比,用NP处理的动物中,用NP处理的动物的禁食水平显着增加(F = 29.14,P <0.001)。治疗组中的FBG水平排列如下:NPH> NPN> CH> C(P <0.05)。 NPN(2045.0 +/-130.1μg)和Nph基团(2038.0 +/-104.2μmg/ l)中胰腺组织中Np的浓度高于C(499.5 +/-27.4μm) G / L)和CH组(494.2 +/- 22.4 mu g / l; p <0.05)。暴露于NP的大鼠的组织形态学检查表明,NP处理基团似乎具有胰腺组织中具有更高程度的炎性损伤,水肿和局灶性坏死细胞。与C组相比,葡萄糖酮酶(GCK)的表达被下调,而在NP处理基团中上调未偶联蛋白-2(UCP-2)(F-GCK = 218.89,P <0.001; FUCP-2 = 18.82,p <0.001)。结论:产前暴露于NP诱导雄性F1大鼠葡萄糖代谢障碍,这可能是由于NP诱导GCK和UCP-2的异常表达模式。

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