首页> 外文期刊>American Journal of Physiology >Abundance of the Na-K-2Cl cotransporter NKCC2 is increased by high-fat feeding in Fischer 344 X Brown Norway (F1) rats
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Abundance of the Na-K-2Cl cotransporter NKCC2 is increased by high-fat feeding in Fischer 344 X Brown Norway (F1) rats

机译:在Fischer 344 x Brown Norway(F1)大鼠中,高脂饲料增加了Na-K-2Cl Cotroansporter NKCC2的丰度

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Insulin resistance is associated with hypertension by mechanisms likely involving the kidney. To determine how the major apical sodium transporter of the thick ascending limb, the bumetanide-sensitive Na-K-2Cl cotransporter (NKCC2) is regulated by high-fat feeding, we treated young male, Fischer 344 X Brown Norway (F344BN) rats for 8 wk with diets containing either normal (NF, 4%) or high (HF, 36%) fat, by weight, primarily as lard. HF-fed rats had impaired glucose tolerance, increased urine excretion of 8-isoprostane (a marker of oxidative stress), increased protein levels for NKCC2 (50-125%) and the renal outer medullary potassium channel (106%), as well as increased natriuretic response to furosemide (20-40%). To test the role of oxidative stress in this response, in study 2, rats were fed the NF or HF diet plus plain drinking water, or water containing NG-nitro-L-arginine methyl ester (L-NAME), a nitric oxide synthase inhibitor (100 mg/l), or tempol, a superoxide dismutase mimetic (1 mmol/l). The combination of tempol with HF nullified the increase in medullary NKCC2, while L-NAME with HF led to the highest expression of medullary NKCC2 (to 498% of NF mean). However, neither of these drugs dramatically affected the elevated natriuretic response to furosemide with HF. Finally, L-NAME led to a marked increase in blood pressure (measured by radiotelemetry), which was significantly enhanced with HF. Mean arterial blood pressure at 7 wk was as follows (mmHg): NF, 100 ± 2; NF plus L-NAME, 122 ± 3; and HF plus L-NAME, 131 ± 2. Overall, HF feeding increased the abundance of NKCC2. Inappropriately high sodium reabsorption in the thick ascending limb via NKCC2 may contribute to hypertension with insulin resistance. Copyright ? 2009 the American Physiological Society.
机译:胰岛素抗性与可能涉及肾脏的机制有关的高血压有关。为了确定如何通过高脂肪饲料调节厚度上升肢体的主要顶端钠转运蛋白,胆敏敏感的Na-K-2Clcotroanger(NKCC2),我们处理了年轻的雄性,Fischer 344 x Brown(F344bn)大鼠8周的饮食含有正常(NF,4%)或高(HF,36%)脂肪,重量,主要是猪油。 HF喂养大鼠葡萄糖耐量损害,8-异前列烷(氧化应激的标志物)增加尿液排泄,NKCC2(50-125%)和肾外外髓质钾通道(106%)的蛋白质水平增加,以及增加对呋塞米(20-40%)的利可限反应。为了测试氧化应激在该响应中的作用,在研究2中,将大鼠喂食NF或HF饮食加上饮用水,或含有Ng-γ-L-精氨酸甲酯(L-NAME)的水,氧化氮合酶抑制剂(100mg / L)或Tempol,超氧化物歧化酶模拟物(1mmol / L)。 Tempol的组合具有HF的髓质NKCC2的增加,而HF的L-名称导致髓质NKCC2的最高表达(占NF平均值的498%)。然而,这些药物都不会显着影响与HF对呋塞米的升高的利尿血清反应。最后,L-NAME导致血压的显着增加(通过无线电测量测量),HF显着增强。 7周的平均动脉血压如下(MMHG):NF,100±2; NF Plus L-NAME,122±3;和HF加L-NAME,131±2.总体上,HF饲料增加了NKCC2的丰富。通过NKCC2厚的上升肢体中的不恰当高钠重吸收可能有助于具有胰岛素抗性的高血压。版权? 2009年美国生理社会。

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