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Dehydro-Tocotrienol-β Counteracts Oxidative-Stress-Induced Diabetes Complications in db/db Mice

机译:Deydro-tocotrienol-β抵消了DB / DB小鼠的氧化应激诱导的糖尿病并发症

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摘要

Hyperglycemia, hyperlipidemia, and adiposity are the main factors that cause inflammation in type 2 diabetes due to excessive ROS production, leading to late complications. To counteract the effects of increased free radical production, we searched for a compound with effective antioxidant properties that can induce coenzyme Q biosynthesis without affecting normal cellular functions. Tocotrienols are members of the vitamin E family, well-known as efficient antioxidants that are more effective than tocopherols. Deh-T3β is a modified form of the naturally occurring tocotrienol-β. The synthesis of this compound involves the sequential modification of geranylgeraniol. In this study, we investigated the effects of this compound in different experimental models of diabetes complications. Deh-T3β was found to possess multifaceted capacities. In addition to enhanced wound healing, deh-T3β improved kidney and liver functions, reduced liver steatosis, and improved heart recovery after ischemia and insulin sensitivity in adipose tissue in a mice model of type 2 diabetes. Deh-T3β exerts these positive effects in several organs of the diabetic mice without reducing the non-fasting blood glucose levels, suggesting that both its antioxidant properties and improvement in mitochondrial function are involved, which are central to reducing diabetes complications.
机译:高血糖,高脂血症和肥胖是由于ROS生产过度的过度并发症导致2型糖尿病症引起炎症的主要因素。为了抵消增加自由基生产的影响,我们搜索了具有有效抗氧化性能的化合物,其可以诱导辅酶Q生物合成而不影响正常细胞功能。 Tocotrienols是维生素E家族的成员,众所周知的是高效抗氧化剂,比生育酚更有效。 DEH-T3β是天然存在的Tocotrienol-β的修饰形式。该化合物的合成涉及甘烷基甲醇的顺序修饰。在这项研究中,我们研究了这种化合物在不同实验模型的糖尿病并发症的实验模型中的影响。发现DEH-T3β具有多方面的能力。除了增强的伤口愈合外,DEH-T3β还改善了肾脏和肝功能,降低了肝脏脂肪变性,并且在2型糖尿病的小鼠模型中的脂肪组织中的缺血和胰岛素敏感性后改善心脏恢复。 DEH-T3β在糖尿病小鼠的几个器官中施加这些积极作用,而不降低非空腹血糖水平,表明其抗氧化性能和改善线粒体功能涉及,这是减少糖尿病并发症的核心。

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