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Disruption of reproductive aging in female and male rats by gestational exposure to estrogenic endocrine disruptors

机译:妊娠暴露于雌激素内分泌干扰物可破坏雌性和雄性大鼠的生殖衰老

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Polychlorinated biphenyls (PCBs) are industrial contaminants and known endocrine-disrupting chemicals. Previous work has shown that gestational exposure to PCBs cause changes in reproductive neuroendocrine processes. Here we extended work farther down the life spectrum and tested the hypothesis that early life exposure to Aroclor 1221 (A1221), a mixture of primarily estrogenic PCBs, results in sexually dimorphic aging-associated alterations to reproductive parameters in rats, and gene expression changes in hypothalamic nuclei that regulate reproductive function. Pregnant Sprague Dawley rats were injected on gestational days 16 and 18 with vehicle (dimethylsulfoxide), A1221 (1 mg/kg), or estradiol benzoate (50 μg/kg). Developmental parameters, estrous cyclicity (females), and timing of reproductive senescence were monitored in the offspring through 9 months of age. Expression of 48 genes was measured in 3 hypothalamic nuclei: the anteroventral periventricular nucleus (AVPV), arcuate nucleus (ARC), and median eminence (females only) by real-time RT-PCR. Serum LH, testosterone, and estradiol were assayed in the same animals. In males, A1221 had no effects; however, prenatal estradiol benzoate increased serum estradiol, gene expression in the AVPV (1 gene), and ARC (2 genes) compared with controls. In females, estrous cycles were longer in the A1221-exposed females throughout the life cycle. Gene expression was not affected in the AVPV, but significant changes were caused by A1221 in the ARC and median eminence as a function of cycling status. Bionetwork analysis demonstrated fundamental differences in physiology and gene expression between cycling and acyclic females independent of treatment. Thus, gestational exposure to biologically relevant levels of estrogenic endocrine-disrupting chemicals has sexually dimorphic effects, with an altered transition to reproductive aging in female rats but relatively little effect in males.
机译:多氯联苯(PCB)是工业污染物和已知的破坏内分泌的化学物质。先前的工作表明,妊娠期接触多氯联苯会导致生殖神经内分泌过程发生变化。在这里,我们将工作范围扩展到了生命的更广范围,并检验了以下假设:生命早期暴露于主要是雌激素PCB的混合物Aroclor 1221(A1221),会导致大鼠生殖参数发生性二态性衰老相关改变,并且基因表达发生变化。调节生殖功能的下丘脑核。在妊娠第16和18天,给怀孕的Sprague Dawley大鼠注射媒介物(二甲亚砜),A1221(1 mg / kg)或苯甲酸雌二醇(50μg/ kg)。在9个月大的后代中监测发育参数,发情周期(雌性)和生殖衰老的时间。通过实时RT-PCR测量了3个下丘脑核中48个基因的表达:前腹侧脑室周围核(AVPV),弓形核(ARC)和中位隆起(仅女性)。在相同的动物中测定血清LH,睾丸激素和雌二醇。在男性中,A1221没有作用。然而,与对照组相比,产前苯甲酸雌二醇增加了血清雌二醇,AVPV(1个基因)和ARC(2个基因)中的基因表达。在女性中,在整个生命周期中,暴露于A1221的女性的发情周期较长。在AVPV中,基因表达不受影响,但是由ARC中的A1221和中位数显着性引起的显着变化是循环状态的函数。生物网络分析表明,单车和无环雌性在生理和基因表达上的根本差异与治疗无关。因此,妊娠暴露于生物学上相关水平的破坏雌激素的内分泌化学物质具有性二态性作用,雌性大鼠向生殖衰老的转变有所改变,而雄性大鼠则相对较少。

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