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Renoprotective mechanisms of soy protein intake in the obese Zucker rat

机译:肥胖Zucker大鼠摄入大豆蛋白的肾脏保护机制

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摘要

We previously showed that long-term consumption of a soy protein diet (SoyP) reduces renal damage in obese Zucker (ObeseZ) rats by restoring urinary NO2 and NO3 excretion (UNO2/NO3V), suggesting that nitric oxide (NO) deficiency may contribute to the renal progression observed in this model. In addition, there is compelling evidence that hyperleptinemia produced deleterious effects on the kidney through its interaction with the short leptin receptor (ObRa). This study was designed to evaluate the contribution of the NO/endothelial NO synthase (eNOS) system, renal oxidative stress, and ObRa expression to the renoprotection conferred by the consumption of a SoyP in ObeseZ rats. Ten lean and ten male ObeseZ rats were included. One-half of each group was fed with a 20% SoyP and the other half with a 20% casein protein diet (CasP) over the course of 160 days. eNOS protein levels and phosphorylation, renal lipoperoxidation (rLPO), and antioxidant enzyme activity were assessed. In addition, renal ObRa, TGF-β, and kidney injury molecule (Kim-1) mRNA levels, as well as urinary Kim-1 levels, were measured. Renal injury observed in ObeseZ rats fed with CasP was not associated with changes in eNOS expression or phosphorylation. However, this group did present with increased rLPO, reduced catalase activity, and upregulation of ObRa, TGF-β1, and Kim-1. In contrast, ObeseZ rats fed with a SoyP exhibited a reduction in NOS-Thr495 phosphorylation and rLPO, as well as an enhanced catalase activity. These findings were associated with a significant reduction of ObRa, TGF-β1, and Kim-1 mRNA levels and urinary Kim-1 protein. Our results show that renoprotection by SoyP in ObeseZ rats is in part mediated by increased NO availability secondary to a reduction in eNOS-T495 phosphorylation and oxidative stress, together with a significant reduction in ObRa and TGF-β expression.
机译:我们以前的研究表明,长期摄入大豆蛋白饮食(SoyP)可通过恢复尿中的NO2和NO3排泄(UNO2 / NO3V)减少肥胖的Zucker(ObeseZ)大鼠的肾脏损害,这表明一氧化氮(NO)缺乏可能会导致在该模型中观察到的肾脏进展。另外,有力的证据表明高瘦素血症通过与短瘦素受体(ObRa)的相互作用对肾脏产生有害作用。这项研究旨在评估一氧化氮/内皮一氧化氮合酶(eNOS)系统,肾脏氧化应激和ObRa表达对ObeseZ大鼠食用SoyP所赋予的肾脏保护作用。包括十只瘦小鼠和十只雄性ObeseZ大鼠。在160天的过程中,每组的一半都喂了20%的SoyP,另一半则喂了20%的酪蛋白饮食(CasP)。评估eNOS蛋白水平和磷酸化,肾脂质过氧化(rLPO)和抗氧化酶活性。此外,还测量了肾脏的ObRa,TGF-β和肾脏损伤分子(Kim-1)mRNA水平,以及尿中的Kim-1水平。用CasP喂养的ObeseZ大鼠中观察到的肾损伤与eNOS表达或磷酸化的改变无关。然而,该组确实表现出rLPO增加,过氧化氢酶活性降低以及ObRa,TGF-β1和Kim-1的上调。相反,喂食SoyP的ObeseZ大鼠的NOS-Thr495磷酸化和rLPO降低,过氧化氢酶活性增强。这些发现与ObRa,TGF-β1和Kim-1 mRNA水平以及尿Kim-1蛋白的显着降低有关。我们的结果表明,ObeseZ大鼠中SoyP的肾脏保护作用部分是由NO可用性增加介导的,而NO可用性继eNOS-T495磷酸化和氧化应激的降低以及ObRa和TGF-β表达的显着降低之后而增加。

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