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Bisphenol A regulation of testicular endocrine function in male rats is affected by diet

机译:饮食会影响雄性大鼠双酚A睾丸内分泌功能的调节

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There is concern that early-life exposure to bisphenol A (BPA) may alter developmental programming and predispose individuals to obesity and reproductive anomalies. The present study was designed to determine if a high fat diet at sexual maturation moderates testicular toxicity occasioned by exposure to BPA during reproductive development. Therefore, male rats were exposed to BPA by maternal gavage (0, 2.5 or 25. μg/kg body weight/day) from gestational day 12 to postnatal day 21. At weaning, control and BPA-exposed animals were placed on a regular normal fat diet (NFD) until 70 days of age when they were continued on the NFD or were maintained on a high fat diet (HFD) until euthanasia at 98 days. Adult male rats maintained on HFD were generally heavier than NFD animals due to greater energy intake but energy intake per unit body weight gain was similar in all animals. However, perinatal exposure to BPA decreased (P<. 0.05) serum adiponectin as well as adiponectin and AdipoR2 protein expression levels in Leydig cells. Importantly, the combination of BPA exposure and HFD consumption promoted lipid peroxidation evidenced by elevated serum thiobarbituric acid reactive substances and glutathione concentrations. These findings imply that interaction between BPA and HFD potentially causes testicular dysfunction to a greater degree than would be due to BPA exposure or HFD consumption. Given the relationship that exists between energy homeostasis and reproductive activity, additional studies are warranted to investigate the consequences of BPA-diet interactions on testicular function.
机译:令人担忧的是,双酚A(BPA)的生命早期暴露可能会改变发育程序,并使个体容易患肥胖症和生殖异常。本研究旨在确定性成熟时的高脂饮食是否能缓解生殖发育期间接触BPA引起的睾丸毒性。因此,雄性大鼠从妊娠第12天到出生后第21天,通过母体管饲法(0、2.5或25.μg/ kg体重/天)暴露于BPA,在断奶时,将对照组和BPA暴露动物置于正常的正常水平脂肪饮食(NFD)直到70日龄,然后继续使用NFD或维持高脂肪饮食(HFD)直到98天安乐死。维持HFD的成年雄性大鼠由于摄入的能量更多,因此比NFD的动物重,但所有动物每单位体重增加的能量摄入相似。然而,围产期暴露于BPA会降低Leydig细胞中的血清脂联素以及脂联素和AdipoR2蛋白表达水平(P <0.05)。重要的是,BPA暴露量和HFD消耗量的组合可促进脂质过氧化作用,这可通过升高的血清硫代巴比妥酸反应性物质和谷胱甘肽浓度来证明。这些发现表明,BPA和HFD之间的相互作用潜在地导致睾丸功能障碍的程度比BPA暴露或HFD消耗引起的程度更大。考虑到能量稳态与生殖活动之间存在关系,有必要进行更多的研究来研究BPA-饮食相互作用对睾丸功能的影响。

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