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首页> 外文期刊>Nutrition, metabolism, and cardiovascular diseases: NMCD >Resistance to obesity and resistance to atherosclerosis: is there a metabolic link?
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Resistance to obesity and resistance to atherosclerosis: is there a metabolic link?

机译:对肥胖的抵抗和对动脉粥样硬化的抵抗:是否存在代谢联系?

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AIM: This review deals with the question whether resistance to obesity affects resistance to atherosclerosis. DATA SYNTHESIS: Resistance to diet-induced obesity in inbred mouse strains involves an adequate response to Leptin, the main regulator of the energy balance cycle. Leptin, an adipokine with both central and peripheral targets, regulates food intake and energy expenditure. Adequate response to leptin involves repression of stearoyl-CoA desaturase, activation of Amp-activated protein-kinase and uncoupling proteins, resulting in fatty acid oxidation and energy expenditure. Most of the obesity-resistant strains are also resistant to atherosclerosis, but so far no information concerning the response to the leptin cycle is available in these strains when bred onto a LDLR(-/-) or apoE(-/-) background. Recent studies in mouse strains on an atherosclerosis permissive background have identified genetic links between obesity and atherosclerosis. Moreover, information derived from studies on mice was applied in order to learn about the metabolic effectors in humans and is included in this review. CONCLUSIONS: The data presented in this review provide recent information concerning metabolic pathways that play an important role in the regulation of energy balance, a prerequisite for resistance to obesity. Hopefully they will provide a background for future genetic studies involved in resistance to atherosclerosis.
机译:目的:本综述探讨对肥胖的抵抗是否会影响对动脉粥样硬化的抵抗。数据综合:对近交小鼠品系中饮食引起的肥胖的抵抗力涉及对瘦素的充分反应,瘦素是能量平衡周期的主要调节因子。瘦素是具有中枢和外周靶点的脂肪因子,可调节食物摄入量和能量消耗。对瘦蛋白的充分反应包括抑制硬脂酰辅酶A去饱和酶,激活Amp活化的蛋白激酶和解偶联蛋白,从而导致脂肪酸氧化和能量消耗。大多数对肥胖有抵抗力的菌株对动脉粥样硬化也有抵抗力,但到目前为止,当将这些菌株繁殖到LDLR(-/-)或apoE(-/-)背景时,尚无有关瘦素周期反应的信息。在动脉粥样硬化宽松背景下对小鼠品系进行的最新研究已经确定了肥胖与动脉粥样硬化之间的遗传联系。此外,为了研究人类中的代谢效应物,应用了从小鼠研究中获得的信息,并将其纳入本综述。结论:本综述提供的数据提供了有关代谢途径的最新信息,这些途径在调节能量平衡中起着重要作用,而能量平衡是抵抗肥胖的前提。希望它们将为涉及动脉粥样硬化抗性的未来基因研究提供背景。

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