首页> 外文期刊>Frontiers in Physiology >Sexual Dimorphism in the Age-Induced Insulin Resistance, Liver Steatosis, and Adipose Tissue Function in Rats
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Sexual Dimorphism in the Age-Induced Insulin Resistance, Liver Steatosis, and Adipose Tissue Function in Rats

机译:大鼠年龄诱导的胰岛素抵抗,肝脂肪变性和脂肪组织功能中的性二态性

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Age-linked metabolic disturbances, such as liver steatosis and insulin resistance, show greater prevalence in men than in women. Thus, our aim was to analyze these sex-related differences in male and female Wistar rats (aged 26 days and 3, 7, and 14 months), and to assess their potential relationship with alterations in the capacity of adipose tissue expansion and the dysregulation of the main adipokines produced by the adipose tissue, leptin and adiponectin. Adiposity-related parameters, blood parameters, the expression of genes related to expandability and inflammation (WAT), lipid metabolism (liver), and leptin and insulin signaling (both tissues) were measured. In females, adiposity index and WAT DNA content gradually increased with age, whereas males peaked at 7 months. A similar sex-dependent pattern was observed for leptin expression in WAT, while Mest expression levels decreased with age in males but not in females. Females also showed increased expression of the proliferation marker PCNA in the inguinal WAT compared to males. In males, leptin/adiponectin ratio greatly increased from 7 to 14 months in a more acute manner than in females, along with an increase in HOMA-IR index and hepatic triacylglyceride content, while no changes were observed in females. In liver, 14-month-old males displayed decreased mRNA levels of Insr, Ampk α 2 , and Cpt1a compared with levels at 7 months. Males also showed decreased mRNA levels of Obrb (both tissues), and increased expression levels of Cd68 and Emr1 (WAT) with age. In conclusion, females are more protected from age-related metabolic disturbances, such as insulin resistance, hepatic lipid deposition, and WAT inflammation compared to males. This may be related to their greater capacity for WAT expansion—reflected by a greater Mest/leptin mRNA ratio—and to their ability to maintain adiponectin levels and preserve leptin sensitivity with aging.
机译:与年龄有关的代谢紊乱,例如肝脂肪变性和胰岛素抵抗,在男性中比女性更普遍。因此,我们的目的是分析雄性和雌性Wistar大鼠(年龄分别为26天和3、7和14个月)的这些与性别相关的差异,并评估它们与脂肪组织扩张能力和失调的改变之间的潜在关系。由脂肪组织产生的主要脂肪因子瘦素和脂联素。测量与肥胖有关的参数,血液参数,与扩张性和炎症(WAT)相关的基因表达,脂质代谢(肝脏)以及瘦素和胰岛素信号传导(两个组织)。在女性中,肥胖指数和WAT DNA含量随着年龄的增长而逐渐增加,而男性在7个月时达到峰值。在WAT中,瘦素的表达观察到了类似的性别依赖性模式,而Mest的表达水平随着年龄的增长而在男性中下降,而在女性中则没有。与男性相比,女性在腹股沟WAT中还显示出增殖标志物PCNA的表达增加。在男性中,瘦素/脂联素的比率比女性更急剧地从7个月增加到14个月,同时HOMA-IR指数和肝三酰甘油含量增加,而女性则没有变化。在肝脏中,与7个月时相比,14个月大的男性显示出Insr,Ampkα2和Cpt1a的mRNA水平降低。雄性还显示,随着年龄的增长,Orbb(两个组织)的mRNA水平降低,Cd68和Emr1(WAT)的表达水平升高。总之,与男性相比,女性受到年龄相关的代谢紊乱的保护更大,例如胰岛素抵抗,肝脂质沉积和WAT炎症。这可能与它们扩大WAT的能力有关(反映在更大的Mest /瘦素mRNA比率上),也与它们保持脂联素水平和保持瘦素随年龄增长的敏感性有关。

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