首页> 外文期刊>Peptides: An International Journal >Sex difference in body weight gain and leptin signaling in hypocretin/orexin deficient mouse models.
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Sex difference in body weight gain and leptin signaling in hypocretin/orexin deficient mouse models.

机译:降钙素/食欲蛋白缺乏症小鼠模型中体重增加和瘦素信号传导的性别差异。

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Recent studies in human and animal models of narcolepsy have suggested that obesity in narcolepsy may be due to deficiency of hypocretin signaling, and is also under the influence of environmental factors and the genetic background. In the current study, using two hypocretin/orexin deficient narcoleptic mouse models (i.e. preproorexin knockout (KO) and orexin/ataxin-3 transgenic (TG) mice) with cross-sectional assessments, we have further analyzed factors affecting obesity. We found that both KO and TG narcoleptic mice with mixed genetic backgrounds (N4-5, 93.75-96.88% genetic composition of C57BL/6) tended to be heavier than wild type (WT) mice of 100-200 days old. The body weight of heterozygous mice was intermediate between those of KO and WT mice. Obesity was more prominent in females in both KO and TG narcoleptic mice and was associated with higher serum leptin levels, suggesting a partial leptin resistance. Obesity is less prominent in the congenic TG narcoleptic mice, but is still evident in females. Our results confirmed that hypocretin/orexin ligand deficiency is one of the critical factors for the obese tendency in narcolepsy. However, multiple factors are also likely to affect this phenotype, and a sex difference specific alteration of leptin-hypocretin signaling may be involved.
机译:在人类和动物的发作性睡病模型中的最新研究表明,发作性睡病中的肥胖症可能是由于胰降血糖素信号转导的缺乏所致,并且还受到环境因素和遗传背景的影响。在当前的研究中,使用具有横断面评估的两种降血糖素/食欲素缺乏的麻醉性小鼠模型(即前原食欲素敲除(KO)和orexin / ataxin-3转基因(TG)小鼠),我们进一步分析了影响肥胖的因素。我们发现具有混合遗传背景(C57BL / 6的遗传组成为N4-5、93.75-96.88%的遗传背景)的KO和TG麻醉性小鼠均比100-200天大的野生型(WT)小鼠重。杂合小鼠的体重介于KO小鼠和WT小鼠之间。肥胖在KO和TG发作性癫痫小鼠中的雌性中更为突出,并且与血清瘦素水平较高相关,表明部分瘦素抵抗。肥胖在同类TG麻醉性小鼠中不太明显,但在雌性中仍然很明显。我们的结果证实,降钙素/食欲素配体缺乏是发作性睡病肥胖倾向的关键因素之一。然而,多种因素也可能影响该表型,并且可能涉及瘦素-促胰泌素信号传导的性别差异特异性改变。

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