Y. Nishimoto, T. Tomida, H. Matsui, Takayuki Ito, K. Okumura
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引用次数: 62
摘要
我们研究了低钠或高钠饮食的果糖喂养胰岛素抵抗大鼠(FFR)肾脏内皮NO合成酶(eNOS)的表达。雄性Sprague-Dawley大鼠被喂食对照(C)或高果糖(40%果糖;F)低钠饮食(0.024% NaCl;LS-C或LS-F)或高钠(3% NaCl;HS-C或HS-F)品种,2周。半数FFR患者口服吡格列酮(10mg·kg−1·day−1),一种胰岛素增敏剂(LS-FP或HS-FP)。HS-F大鼠收缩压明显高于LS-F大鼠和HS-C大鼠(HS-F大鼠为129±4 mm Hg, LS-F大鼠为115±3 mm Hg, P <0.05;(与HS-C大鼠相比,为116±5 mm Hg, P <0.05),表明FFR中高血压对盐的依赖性。高钠负荷时,FFR大鼠肾髓质eNOS蛋白表达明显低于对照组。吡格列酮可降低HS-F大鼠高血压(HS-F大鼠为129±4 mm Hg, HS-FP大鼠为113±3 mm Hg, P <0.05),降低HS-F大鼠髓质eNOS蛋白表达。无论钠负荷如何,FFR大鼠与对照组大鼠肾皮质或主动脉的eNOS表达均无显著差异。这些结果表明,在高钠负荷下,eNOS减少肾髓质NO的产生可能在果糖喂养的盐敏感性高血压中起作用。
Decrease in Renal Medullary Endothelial Nitric Oxide Synthase of Fructose-Fed, Salt-Sensitive Hypertensive Rats
We investigated the expression of endothelial NO synthase (eNOS) in the kidneys of fructose-fed insulin-resistant rats (FFR) with a low- or high-sodium diet. Male Sprague-Dawley rats were fed a control (C) or high-fructose (40% fructose; F) diet, with each coming in low-sodium (0.024% NaCl; LS-C or LS-F) or high-sodium (3% NaCl; HS-C or HS-F) varieties, for 2 weeks. Half of the FFR were orally administered pioglitazone (10 mg · kg−1 · day−1), an insulin-sensitizing agent (LS-FP or HS-FP). The systolic blood pressure was significantly higher in the HS-F rats than in the LS-F rats or the HS-C rats (HS-F rats, 129±4 mm Hg, versus LS-F rats, 115±3 mm Hg, P <0.05; or versus HS-C rats, 116±5 mm Hg, P <0.05), which indicated the salt dependence of hypertension in FFR. The protein expression of eNOS in the renal medulla of FFR was significantly lower than that in control rats during a high sodium load. The administration of pioglitazone prevented the hypertension (HS-F rats, 129±4 mm Hg, versus HS-FP rats, 113±3 mm Hg, P <0.05) and the reduction of medullary eNOS protein expression in HS-F rats. There was no significant difference in eNOS expression in the renal cortex or aorta between FFR and control rats, regardless of sodium load. These results suggest that the decrease in renal medullary NO production by eNOS during a high sodium load may play a role in fructose-fed, salt-sensitive hypertension.