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单侧输尿管梗阻小鼠肾脏中氧化应激增加。

Increased oxidative stress in mouse kidneys with unilateral ureteral obstruction.

作者信息

Kawada N, Moriyama T, Ando A, Fukunaga M, Miyata T, Kurokawa K, Imai E, Hori M

机构信息

The First Department of Medicine, Osaka University of Medicine, School of Health and Sport Sciences, Osaka University, Japan.

出版信息

Kidney Int. 1999 Sep;56(3):1004-13. doi: 10.1046/j.1523-1755.1999.00612.x.

Abstract

BACKGROUND

Unilateral ureteral obstruction (UUO) is a well-established experimental model of renal injury leading to interstitial fibrosis. The molecular and cellular mechanism(s) of interstitial fibrosis in UUO kidney is beginning to be elucidated. Oxidative stress has been implicated in the pathogenesis of various forms of renal injury; however, little is known about its involvement in the setting of ureteral obstruction.

METHODS

To investigate the possible involvement of oxidative stress in the obstructive nephropathy, we studied the occurrence and distribution of Nepsilon-carboxymethyl-lysine (CML) in the kidneys after ureteral obstruction. CML is an integrative biomarker of the cumulative protein damage induced by glycoxidation. Heme oxygenase-1 (HO-1) mRNA and protein expression, which is a sensitive and reliable indicator of oxidative stress, were also examined.

RESULTS

CML immunoreactivity was found in the interstitium of UUO kidneys 10 days after the onset ureteral obstruction. HO-1 mRNA was up-regulated as early as 12 hours after ureteral obstruction. HO-1 immunoreactivity was observed in the periglomerular and peritubular interstitium two days after ureteral obstruction.

CONCLUSIONS

These results strongly suggested the presence of increased oxidative stress in the interstitium of UUO kidneys. The oxidative stress and the formation of various kind of biological active oxidative products in the interstitium are supposed to play significant roles in UUO kidney.

摘要

背景

单侧输尿管梗阻(UUO)是一种公认的导致肾间质纤维化的肾损伤实验模型。UUO肾脏间质纤维化的分子和细胞机制正开始被阐明。氧化应激已被认为与各种形式的肾损伤发病机制有关;然而,关于其在输尿管梗阻情况下的作用知之甚少。

方法

为了研究氧化应激在梗阻性肾病中的可能作用,我们研究了输尿管梗阻后肾脏中Nε-羧甲基赖氨酸(CML)的发生和分布。CML是糖氧化诱导的累积蛋白质损伤的综合生物标志物。还检测了血红素加氧酶-1(HO-1)的mRNA和蛋白表达,其是氧化应激的敏感且可靠指标。

结果

在输尿管梗阻发作10天后,在UUO肾脏的间质中发现了CML免疫反应性。输尿管梗阻后12小时,HO-1 mRNA即上调。输尿管梗阻两天后,在肾小球周围和肾小管周围间质中观察到HO-1免疫反应性。

结论

这些结果强烈提示UUO肾脏间质中氧化应激增加。间质中的氧化应激及各种生物活性氧化产物的形成可能在UUO肾脏中起重要作用。

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