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首页> 外文期刊>Basic & clinical pharmacology & toxicology. >Effects of an Antimutagenic 1,4-Dihydropyridine AV-153 on Expression of Nitric Oxide Synthases and DNA Repair-related Enzymes and Genes in Kidneys of Rats with a Streptozotocin Model of Diabetes Mellitus
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Effects of an Antimutagenic 1,4-Dihydropyridine AV-153 on Expression of Nitric Oxide Synthases and DNA Repair-related Enzymes and Genes in Kidneys of Rats with a Streptozotocin Model of Diabetes Mellitus

机译:抗突变的1,4-二氢吡啶AV-153对糖尿病大鼠链脲佐菌素模型大鼠肾脏一氧化氮合酶表达及DNA修复相关酶和基因的影响

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Development of complications of diabetes mellitus (DM), including diabetic nephropathy, is a complex multi-stage process, dependent on many factors including the modification of nitric oxide (NO) production and an impaired DNA repair. The goal of this work was to study in vivo effects of 1,4-dihydropyridine AV-153, known as antimutagen and DNA binder, on the expression of several genes and proteins involved in NO metabolism and DNA repair in the kidneys of rats with a streptozotocin (STZ)-induced model of DM. Transcription intensity was monitored by means of real-time RT-PCR and the expression of proteins by immunohistochemistry. Development of DM significantly induced PARP1 protein expression, while AV-153 (0.5 mg/kg) administration decreased it. AV-153 increased the expression of Parp1 gene in the kidneys of both intact and diabetic animals. Expression of H2afx mRNA and H2AX histone protein, a marker of DNA breakage, was not changed in diabetic animals, but AV-153 up-regulated the expression of the gene without any impact on the protein expression. Development of DM was followed by a significant increase in iNOS enzyme expression, while AV-153 down-regulated the enzyme expression up to normal levels. iNos gene expression was also found to be increased in diabetic animals, but unlike the protein, the expression of mRNA was found to be enhanced by AV-153 administration. Expression of both eNOS protein and eNos gene in the kidneys was down-regulated, and the administration of AV-153 normalized the expression level. The effects of the compound in the kidneys of diabetic animals appear to be beneficial, as a trend for the normalization of expression of NO synthases is observed.
机译:包括糖尿病性肾病在内的糖尿病(DM)并发症的发展是一个复杂的多阶段过程,取决于许多因素,包括一氧化氮(NO)产生的修饰和DNA修复受损。这项工作的目的是研究1,4-二氢吡啶AV-153(称为抗诱变剂和DNA结合剂)在大鼠肾脏中参与NO代谢和DNA修复的几种基因和蛋白质表达的体内作用。链脲佐菌素(STZ)诱导的糖尿病模型。通过实时RT-PCR监测转录强度,并通过免疫组织化学监测蛋白质的表达。 DM的发展显着诱导了PARP1蛋白的表达,而AV-153(0.5 mg / kg)的给药降低了它的表达。 AV-153增加了完整动物和糖尿病动物肾脏中Parp1基因的表达。 H2afx mRNA和H2AX组蛋白蛋白(DNA断裂的标志物)的表达在糖尿病动物中没有改变,但是AV-153上调了该基因的表达,而对蛋白表达没有任何影响。 DM发生后,iNOS酶表达显着增加,而AV-153将酶表达下调至正常水平。在糖尿病动物中也发现iNos基因表达增加,但是与蛋白质不同,发现通过AV-153给药可增强mRNA的表达。肾脏中的eNOS蛋白和eNos基因的表达均被下调,而AV-153的给药使表达水平正常化。该化合物在糖尿病动物肾脏中的作用似乎是有益的,因为观察到NO合酶表达正常化的趋势。

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