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首页> 外文期刊>Hormone and Metabolic Research >High Salt Intake Promotes Different Responses to Urodilatin and Uroguanylin in the Isolated Rat Kidney
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High Salt Intake Promotes Different Responses to Urodilatin and Uroguanylin in the Isolated Rat Kidney

机译:高盐摄入量促进与孤立的大鼠肾脏尿嘧啶和尿瓜蛋白的不同反应

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摘要

Urodilatin (UD) and uroguanylin (UGN) have been implicated in the regulation of salt and water homeostasis, particularly in the balance handling of salt intake. In this sense, the aim of the present work was to study the main effects of these peptides in kidneys from animals subjected to high NaCl (2%) intake, during 10 days in metabolic cages. The control group received only normal water, whereas the treated group drank 2% solution of NaCl (NaCl 2%). In addition, we studied effect of subthreshold UD (0.14nM) and UGN (0.06M) doses in NaCl 2% after a 30-min control period. Kidney perfusion was performed with Krebs-Henseleit containing 6g% bovine albumin previously dialyzed. The effects of UD (0.14nM) promoted reduction of PP, RVR, and UF in the NaCl 2% group. We also observed an increase in %TNa (+) and %TCl (-) . The main effects of UGN in NaCl 2% were increase in PP, UF, and GFR, followed by a reduction in %TNa (+) and %TCl (-) . After an increased intake of salt, physiological pathways are activated and regulated in order to eliminate excess sodium. In this study, we observed that in a subthreshold dose, UD does not promotes natriuresis and diuresis, suggesting that UGN is an important hormone in inducing salt excretion in a chronic salt overload. Therefore, the effects herein described may play a contributory role in the regulation of kidney function after ingestion of salty meals.
机译:尿嘧啶(UD)和尿瓜蛋白(UGN)涉及盐​​和水稳态的调节,特别是在平衡处理盐摄入量。从这个意义上讲,本作工作的目的是研究这些肽在代谢笼中10天内从受到高NaCl(2%)摄入量的动物的肾脏中这些肽的主要效果。对照组仅接受正常水,而处理的组滴2%的NaCl溶液(NaCl 2%)。此外,在30分钟控制期后,我们研究了亚阈值UD(0.14nm)和Ugn(0.06M)剂量在NaCl 2%中的作用。用含有6g%牛白蛋白先前透析的krebs-henseleit进行肾灌注。 UD(0.14nm)的效果促进了NaCl 2%基团中PP,RVR和UF的降低。我们还观察到%TNA(+)和%TCl( - )增加。 UGN在NaCl 2%中的主要效果在PP,UF和GFR中增加,然后减少%TNA(+)和%TCl( - )。在增加盐的摄入量后,激活和调节生理途径以消除过量的钠。在这项研究中,我们观察到,在亚阈值剂量中,UD不促进Natriureis和Diulesis,表明Ugn是诱导慢性盐过载中盐排泄的重要激素。因此,本文所述的效果可能在摄入咸饭后在肾功能调节中发挥贡献作用。

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