Melatonin improves liver and pancreatic tissue injuries in diabetic rats: role on antioxidant enzymes.

IF 1.8 Q4 ENDOCRINOLOGY & METABOLISM
Journal of Diabetes and Metabolic Disorders Pub Date : 2023-01-13 eCollection Date: 2023-06-01 DOI:10.1007/s40200-022-01179-w
Onur Ertik, Bertan Boran Bayrak, Goksel Sener, Refiye Yanardag
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Abstract

Purpose: Melatonin (Mel) is an indolamine mainly synthesized by the pineal gland and many other organs. It plays an important role in scavenging free radicals and stimulating antioxidant enzymes. The goal of this study was to investigate the effect of Mel and/or insulin treatment on oxidative liver and pancreas injuries in diabetic rats.

Methods: Male Wistar albino rats were assigned into 5 groups. Group I: control animals. Group II: diabetes was induced via a single dose of STZ (60 mg/kg) administered intraperitoneally. Group III: diabetic rats treated with Mel (10 mg/kg/day). Group IV: diabetic rats given insulin (6U/kg) subcutaneously. Group V: diabetic rats that received insulin and Mel at the same dose and time. After 12 weeks of the experiment, the animals were decapitated, liver and pancreas tissues were collected.

Results: The results indicated that reduced glutathione levels in liver and pancreatic tissue decreased, while protein carbonyl, advanced oxidized protein products and lipid peroxidation levels were elevated in diabetic group. Antioxidant enzyme activities decreased in liver tissues but increased in pancreatic tissues of the diabetic group. Administration of Mel, insulin or Mel + insulin reversed these biochemical changes in the diabetic animals.

Conclusion: This work shows that in long-term oxidative stress conditions caused by STZ-induced diabetes, either Mel or Mel + insulin administration may improve the deteriorated oxidant/antioxidant system in both the liver and pancreas tissues. These results suggested that Mel alone or Mel + insulin treatments might have a significant role in protecting against liver and pancreatic damage in STZ diabetic rats via different antioxidant effects.

褪黑素改善糖尿病大鼠肝脏和胰腺组织损伤:对抗氧化酶的作用。
目的:褪黑激素(Mel)是一种主要由松果体和许多其他器官合成的吲哚胺。它在清除自由基和刺激抗氧化酶方面起着重要作用。本研究的目的是研究Mel和/或胰岛素治疗对糖尿病大鼠氧化性肝和胰腺损伤的影响。方法:雄性Wistar白化大鼠随机分为5组。第一组:对照动物。第II组:通过腹膜内给予单剂量STZ(60mg/kg)诱导糖尿病。第III组:用Mel(10mg/kg/天)治疗糖尿病大鼠。IV组:糖尿病大鼠皮下注射胰岛素6U/kg。第五组:糖尿病大鼠接受相同剂量和时间的胰岛素和梅尔。实验12周后,将动物斩首,收集肝脏和胰腺组织。结果:糖尿病组肝和胰腺组织中还原型谷胱甘肽水平下降,而蛋白羰基、晚期氧化蛋白产物和脂质过氧化水平升高。抗氧化酶活性在糖尿病组的肝组织中降低,但在胰腺组织中增加。Mel、胰岛素或Mel的给药 + 胰岛素逆转了糖尿病动物的这些生化变化。结论:这项工作表明,在STZ诱导的糖尿病引起的长期氧化应激条件下,Mel或Mel + 胰岛素给药可以改善肝脏和胰腺组织中恶化的氧化剂/抗氧化系统。这些结果表明梅尔单独或梅尔 + 胰岛素治疗可能通过不同的抗氧化作用在保护STZ糖尿病大鼠免受肝脏和胰腺损伤方面发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Diabetes and Metabolic Disorders
Journal of Diabetes and Metabolic Disorders Medicine-Internal Medicine
CiteScore
4.80
自引率
3.60%
发文量
210
期刊介绍: Journal of Diabetes & Metabolic Disorders is a peer reviewed journal which publishes original clinical and translational articles and reviews in the field of endocrinology and provides a forum of debate of the highest quality on these issues. Topics of interest include, but are not limited to, diabetes, lipid disorders, metabolic disorders, osteoporosis, interdisciplinary practices in endocrinology, cardiovascular and metabolic risk, aging research, obesity, traditional medicine, pychosomatic research, behavioral medicine, ethics and evidence-based practices.As of Jan 2018 the journal is published by Springer as a hybrid journal with no article processing charges. All articles published before 2018 are available free of charge on springerlink.Unofficial 2017 2-year Impact Factor: 1.816.
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