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Metanil Yellow Impairs the Estrous Cycle Physiology and Ovarian Folliculogenesis in Female Rats

机译:偏甲黄损害雌性大鼠的发情周期生理和卵巢卵泡形成

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Metanil yellow (MY) is a most frequently used food color in West Bengal, India. The toxic effects of MY on the male reproductive system have been reported discriminately in animal models. The probable toxic effects of MY on female reproductive functions have not been reported till date. Therefore, this study was designed to examine the effect of MY on estrous cycle rhythmicity and ovarian folliculo genesis in female rats. Rats have been exposed to MY at three doses of 250, 500, 750 mg kgBW~1 day~1 for two exposure durations, 20 and 30 days. We observed significant changes in the number and duration of estrous cycle along with prominent cytoarchitectural changes in the cellular characteristics of vaginal smear of component phases of estrous cycle in a dose and duration-dependent manner in MY-treated rats compared to control rats. We also observed a significant decrease in serum follicle stimulating hor mone (FSH), luteinizing hormone (LH), and estradiol levels in MY-treated rats. Further, the activities of some antioxidants enzymes in brain tissues of MY-treated rats were significantly decreased and the level of malondialdehyde (MDA), a marker of lipid peroxidation, in brain tissues of MY-treated rats was also sig nificantly increased. The ovarian folliculogenesis in this study was also significantly impaired in MY-treated rats. In conclusion, MY impairs the estrous cycle and ovarian folliculogenesis in female rats by inhibiting the secretion of FSH and estradiol from the ovary, and inducing the oxidative stress in hypothalamic-pituitary-gonadal axis.
机译:在印度西孟加拉邦,偏甲黄(MY)是最常用的食用色素。在动物模型中有区别地报道了MY对雄性生殖系统的毒性作用。迄今为止,MY对女性生殖功能的可能毒性作用尚未报道。因此,本研究旨在检查MY对雌性大鼠发情周期节律和卵巢卵泡形成的影响。大鼠已经分别以250、500、750 mg kgBW〜1天〜1三种剂量暴露于MY,暴露时间分别为20天和30天。与对照组相比,在MY治疗的大鼠中,我们观察到发情周期的数量和持续时间的显着变化,以及发情周期的组成阶段的阴道涂片的细胞涂片细胞特征的显着细胞结构变化,呈剂量和持续时间依赖性。我们还观察到MY治疗大鼠的血清卵泡刺激素(FSH),黄体生成激素(LH)和雌二醇水平显着降低。此外,MY处理的大鼠脑组织中某些抗氧化剂酶的活性显着降低,MY处理的大鼠脑组织中丙二醛(MDA)的水平也明显增加,脂质过氧化的标志物。本研究中的卵巢卵泡发生在MY治疗的大鼠中也显着受损。总之,MY通过抑制卵巢中FSH和雌二醇的分泌,并诱导下丘脑-垂体-性腺轴的氧化应激,从而损害雌性大鼠的发情周期和卵巢卵泡形成。

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