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The Anabolic Androgenic Steroid Nandrolone Decanoate Disrupts Redox Homeostasis in Liver Heart and Kidney of Male Wistar Rats

机译:合成代谢类固醇甾烷癸酸诺龙可破坏雄性Wistar大鼠肝脏心脏和肾脏的氧化还原稳态。

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摘要

The abuse of anabolic androgenic steroids (AAS) may cause side effects in several tissues. Oxidative stress is linked to the pathophysiology of most of these alterations, being involved in fibrosis, cellular proliferation, tumorigenesis, amongst others. Thus, the aim of this study was to determine the impact of supraphysiological doses of nandrolone decanoate (DECA) on the redox balance of liver, heart and kidney. Wistar male rats were treated with intramuscular injections of vehicle or DECA (1 mg.100 g−1 body weight) once a week for 8 weeks. The activity and mRNA levels of NADPH Oxidase (NOX), and the activity of catalase, glutathione peroxidase (GPx) and total superoxide dismutase (SOD), as well as the reduced thiol and carbonyl residue proteins, were measured in liver, heart and kidney. DECA treatment increased NOX activity in heart and liver, but NOX2 mRNA levels were only increased in heart. Liver catalase and SOD activities were decreased in the DECA-treated group, but only catalase activity was decreased in the kidney. No differences were detected in GPx activity. Thiol residues were decreased in the liver and kidney of treated animals in comparison to the control group, while carbonyl residues were increased in the kidney after the treatment. Taken together, our results show that chronically administered DECA is able to disrupt the cellular redox balance, leading to an oxidative stress state.
机译:合成代谢雄激素类固醇(AAS)的滥用可能在几个组织中引起副作用。氧化应激与大多数这些改变的病理生理相关,涉及纤维化,细胞增殖,肿瘤发生等。因此,本研究的目的是确定超生理剂量癸酸诺龙对肝脏,心脏和肾脏的氧化还原平衡的影响。 Wistar雄性大鼠每周一次肌肉注射媒介物或DECA(体重1 mg.100 g -1 ),治疗8周。在肝脏,心脏和肾脏中测定了NADPH氧化酶(NOX)的活性和mRNA水平,过氧化氢酶,谷胱甘肽过氧化物酶(GPx)和总超氧化物歧化酶(SOD)的活性,以及​​还原的硫醇和羰基残留蛋白的含量。 。 DECA处理可增加心脏和肝脏中的NOX活性,但仅心脏中的NOX2 mRNA水平升高。在DECA治疗组中,肝脏的过氧化氢酶和SOD活性降低,但肾脏中只有过氧化氢酶活性降低。在GPx活动中未检测到差异。与对照组相比,治疗组动物的肝脏和肾脏中硫醇残留减少,而治疗后肾脏中羰基残留增加。两者合计,我们的结果表明,长期服用DECA能够破坏细胞氧化还原平衡,从而导致氧化应激状态。

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