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Moderate exercise training provides modest protection against adipose tissue inflammatory gene expression in response to high‐fat feeding

机译:适度的运动训练可对高脂喂养产生的脂肪组织炎症基因表达提供适度的保护

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摘要

As white adipose tissue (WAT) expands under obesogenic conditions, local WAT hypoxia may contribute to the chronic low‐grade inflammation observed in obesity. Aerobic exercise training is beneficial in treating WAT inflammation after obesity is established, but it remains unknown whether exercise training, while on a concomitant high‐fat (HF) diet, influences WAT inflammation during the development of obesity. We sought to determine the effects of 4, 8, and 12 weeks of HF feeding and/or moderate intensity treadmill exercise training (EX) on the relationship between inflammatory and hypoxic gene expression within mouse WAT. Male C57Bl6/J mice (n = 113) were randomized into low‐fat (LF)/sedentary (SED), LF/EX, HF/SED, or HF/EX groups. The low‐fat and high‐fat diets contained 10% and 60% energy from fat, respectively. Exercise training consisted of treadmill running 5 days/week at 12 m/min, 8% incline, 40 min/day. Quantitative real‐time PCR was used to assess gene expression. HF diet impaired glucose regulation, and upregulated WAT gene expression of inflammation (IL‐1β, IL‐1ra, TNFα), macrophage recruitment and infiltration (F4/80 and monocyte chemoattractant protein), and M1 (CD11c) and M2 (CD206 and Arginase‐1) macrophage polarization markers. Treadmill training resulted in a modest reduction of WAT macrophage and inflammatory gene expression. HF diet had little effect on hypoxia‐inducible factor‐1α and vascular endothelial growth factor, suggesting that WAT inflammatory gene expression may not be driven by hypoxia within the adipocytes. Treadmill training may provide protection by preventing WAT expansion and macrophage recruitment.
机译:随着白色脂肪组织(WAT)在致肥胖条件下扩张,局部WAT缺氧可能会导致肥胖中观察到的慢性低度炎症。有氧运动训练对肥胖症建立后的WAT炎症治疗是有益的,但尚不清楚运动训练在肥胖饮食的同时是否会影响WAT炎症,而同时接受高脂饮食。我们试图确定4、8和12周的HF喂养和/或中等强度的跑步机运动训练(EX)对小鼠WAT中炎症和低氧基因表达之间关系的影响。将雄性C57B16 / J小鼠(n = 113)随机分为低脂(LF)/ sententary(SED),LF / EX,HF / SED或HF / EX组。低脂和高脂饮食分别包含10%和60%的脂肪能量。运动训练包括跑步机以12 m / min,8%倾斜,40 min / day的速度跑步5天/周。实时定量PCR用于评估基因表达。 HF饮食损害葡萄糖调节,并上调炎症的WAT基因表达(IL-1β,IL-1ra,TNFα),巨噬细胞募集和浸润(F4 / 80和单核细胞趋化蛋白),M1(CD11c)和M2(CD206和精氨酸酶) ‐1)巨噬细胞极化标记。跑步机训练导致WAT巨噬细胞和炎症基因表达的适度降低。 HF饮食对缺氧诱导因子-1α和血管内皮生长因子的影响很小,这表明WAT炎症基因表达可能不是由脂肪细胞内的缺氧驱动的。跑步机培训可以通过防止WAT扩展和巨噬细胞募集来提供保护。

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