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Ovarian hormones mediate running-induced changes in high fat diet choice patterns in female rats

机译:卵巢激素在女性大鼠中介导高脂肪饮食选择模式的运行诱导的变化

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Physical inactivity and increased consumption of energy dense, high fat (HF) foods often leads to a state of positive energy balance. Regular exercise can facilitate the maintenance of a healthy body weight and mediate changes in dietary selection. Past studies using a two-diet choice (chow vs. HF) and voluntary wheel running paradigm found that when a novel HF diet and wheel running are simultaneously introduced, male rats show complete and persistent HF diet avoidance whereas the majority of females show HF diet avoidance for a few days, but then revert to HF diet preference. Ovariectomy (OVX) appears to decrease preference for the HF diet bringing it closer to that of males. Given that estradiol but not progesterone mediates changes in food intake and energy balance, we hypothesized that estradiol signaling is required for the reversal of HF diet avoidance in female rats. Accordingly, Experiment 1 compared the persistency of running-induced HF diet avoidance in males, sham-operated females, and OVX rats with replacement of oil vehicle, estradiol benzoate (E), progesterone (P), or both (E + P). The number of wheel running rats that either avoided or preferred the HF diet varied with hormone treatment. The reversal of HF diet avoidance in running females and OVX E + P rats occurred more rapidly and frequently than male running rats. E + P but not E or P replaced OVX wheel running rats significantly reversed HF diet avoidance. OVX oil rats avoided HF diet to the same extent as male rats for the first 11 days of diet choice and then rapidly increased HF diet intake and began preferring it. This incomplete elimination of sex differences suggests that developmental factors or androgens might play a role in sustaining running-induced HF diet avoidance. Subsequently, Experiment 2 aimed to determine the role of androgens in the persistency of running-associated HF diet avoidance with sham-operated and orchiectomized (GDX) male rats. Both intact and GDX male running rats persistently avoided the HF diet to the same extent. Taken together, these results suggest that activational effects of ovarian hormones play a role in female specific running-induced changes in diet choice patterns. Furthermore, the activational effects of androgens are not required for the expression of HF diet avoidance in males.
机译:能量致密的物理不活动和增加的能量致密,高脂肪(HF)食物通常导致正能量平衡的状态。经常运动可以促进维持健康的体重和培养膳食选择的变化。过去的研究使用两种饮食选择(CHOW VS. HF)和自愿车轮运行范式发现,当同时引入新的HF饮食和车轮运行时,雄性大鼠显示完全和持久的HF饮食避免,而大多数女性显示HF饮食避免几天,但随后恢复为HF饮食偏好。卵巢切除术(OVX)似乎降低了对HF饮食的偏好,使其更接近雄性。鉴于雌二醇但不是黄体酮介导食物摄入和能量平衡的变化,我们假设雌二醇信号传导是雌性大鼠中HF饮食避免的逆转所必需的。因此,实验1比较了在雄性,假手术雌性和OVX大鼠中替代石油载体,雌二醇苯甲酸酯(E),孕酮(P)或两者(E + P)的持续性诱导的HF饮食避免持续性。避免或优选HF饮食的车轮数量随着激素处理而变化。在跑步女性和OVX E + P大鼠的逆转率避免的HF饮食避免比雄性跑大鼠更快且经常发生。 E + P但不是E或P取代了OVX轮运行大鼠显着反转HF饮食避免。 OVX油大鼠避免了HF饮食在与饮食选择的前11天相同的程度,然后迅速增加HF饮食摄入并开始偏好。这种不完全消除性差异表明,发育因素或雄激素可能在持续跑步诱导的HF饮食中发挥作用。随后,实验2旨在通过假手术和睾丸形成(GDX)雄性大鼠来确定Androgens在运行相关的HF饮食避免持续性中的作用。完整和GDX男性运行大鼠持续避免了HF饮食在相同程度上。总之,这些结果表明卵巢激素的激活效应在饮食选择模式的女性特定运行诱导的变化中发挥作用。此外,在雄性中表达HF饮食避免的表达不需要雄激素的活性作用。

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