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Dysregulation of dimethylargininedimethylaminohydrolase/asymmetric dimethylarginine pathway in rat type II diabetic nephropathy

机译:大鼠II型糖尿病肾病中二甲基精氨酸二甲基氨基水解酶/不对称二甲基精氨酸途径的调节异常

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摘要

An impaired generation of nitric oxide has been associated with diabetic renal disease. In order to elucidate the underlying molecular mechanisms into how nitric oxide synthesis is impaired in diabetic renal disease, we examined changes in activities and expressions of some renal enzymes involved in nitric oxide production during the development of diabetic nephropathy in type II diabetic Otsuka Long-Evans Tokushima Fatty rats. Ten-week old Otsuka Long-Evans Tokushima Fatty (n = 40) and control Long-Evans Tokushima Otsuka rats (n = 20) were given drinking water containing 20% sucrose to accelerate the development of diabetic nephropathy. Otsuka Long-Evans Tokushima Fatty rats developed diabetic nephropathy in an age-dependent manner. Renal nitric oxide synthase activities in Otsuka Long-Evans Tokushima Fatty rats gradually declined with the progression of diabetic mellitus and were significantly lower than those of age-matched Long-Evans Tokushima Otsuka rats after 22 weeks of age. The lower activities of renal nitric oxide synthase in Otsuka Long-Evans Tokushima Fatty rats were correlated with relatively higher levels of renal free asymmetric dimethylarginine, an endogenous nitric oxide synthase inhibitor, and were also correlated with decreased activities of dimethylargininedimethylaminohydrolase which metabolizes asymmetric dimethylarginine to citrulline. These results imply that dimethylargininedimethylaminohydrolase dysregulation may play an important role in the development of diabetic nephropathy by increasing asymmetric dimethylarginine levels, which leads to inhibition of renal nitric oxide synthesis.
机译:一氧化氮的产生受损与糖尿病性肾脏疾病有关。为了阐明在糖尿病性肾脏疾病中一氧化氮合成受损的潜在分子机制,我们研究了II型糖尿病大肾病患者大肾病的发展过程中与一氧化氮产生有关的一些肾脏酶活性和表达的变化。德岛胖鼠。给十周大的大冢长埃文斯德岛胖子(n = 40)和对照组的长伊万岛德岛大冢鼠(n = 20)喝含20%蔗糖的饮用水以加速糖尿病性肾病的发展。 Otsuka Long-Evans Tokushima肥胖大鼠以年龄依赖性方式发展为糖尿病性肾病。随着糖尿病的发展,大冢长埃文斯德岛肥胖大鼠的肾脏一氧化氮合酶活性逐渐下降,并且在22周龄后明显低于年龄相匹配的长埃文斯德岛大冢大鼠。 Otsuka Long-Evans Tokushima Fatty大鼠肾一氧化氮合酶活性较低与内源性一氧化氮合酶抑制剂肾游离不对称二甲基精氨酸水平相对较高有关,并且与将不对称二甲基精氨酸代谢为瓜氨酸的二甲基精氨酸二甲基氨基水解酶活性降低相关。 。这些结果暗示二甲基精氨酸二甲基氨基水解酶失调可能通过增加不对称的二甲基精氨酸水平而在糖尿病性肾病的发展中起重要作用,从而导致肾脏一氧化氮合成的抑制。

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