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Estrogens in unexpected places: possible implications for researchers and consumers.

机译:意外地方的雌激素:对研究人员和消费者的潜在影响。

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摘要

Estrogenic activity originating in unexpected places was encountered on three occasions during an investigation of whether Saccharomyces cerevisiae synthesized estrogens. In each instance, estradiol found in the conditioned yeast culture medium originated from an exogenous source and was not synthesized by the yeast. In the first instance, yeast grown in the laboratory showed a time-dependent increase in estradiol in the conditioned medium. However, the culture medium supplement Bacto-peptone was found to contain large amounts of estrone. When added to yeast cultures in the form of YPD medium (yeast extract, Bacto-peptone, and dextrose), S. cerevisiae converted the estrone to estradiol leading to the accumulation of estradiol over time. In the second instance, commercially purchased S. cerevisiae grown in a molasses medium exhibited substantial amounts of estradiol. However, corn and beet molasses contained sufficient estrone and estradiol to account for the findings. As in the first instance, the yeast converted the estrone into estradiol. In the third instance, autoclaving culture medium in polycarbonate plastic flasks was found to cause an estrogenic substance to be added to the medium, whether yeast were present or not. It was determined that the autoclaving process leached bisphenol-A (BPA) out of the polycarbonate plastic. BPA was shown to bind to estrogen receptors and to induce estrogenic activity, including stimulation of MCF-7 breast cancer-cell proliferation and induction of the expression of progesterone receptors. The three instances highlight potential problems for investigators who might inadvertently add estrogens to experimental systems confounding their results. The BPA findings raise concerns about the possible addition of this estrogenic molecule to the food supply since polycarbonate plastic is used in myriad applications in the packaging of food and beverages. Although we are unaware of the substantial contamination of food products with BPA, we believe this possibility should be carefully investigated.
机译:在调查酿酒酵母是否合成雌激素的过程中,曾三度遇到始于意外部位的雌激素活性。在每种情况下,在条件酵母培养基中发现的雌二醇均来自外源性来源,而不是由酵母合成的。首先,在实验室中生长的酵母在条件培养基中显示雌二醇的时间依赖性增加。然而,发现培养基补充杆菌蛋白p包含大量的雌酮。当以YPD培养基(酵母提取物,杆菌蛋白p和右旋糖)的形式添加到酵母培养物中时,酿酒酵母将雌酮转化为雌二醇,导致雌二醇随时间积累。在第二种情况下,在糖蜜培养基中生长的商业购买的酿酒酵母表现出大量的雌二醇。但是,玉米和甜菜糖蜜中含有足够的雌酮和雌二醇,足以说明这一发现。如第一种情况,酵母将雌酮转化为雌二醇。在第三种情况下,发现在聚碳酸酯塑料烧瓶中高压灭菌培养基会导致向培养基中添加雌激素物质,无论是否存在酵母。可以确定,高压灭菌法从聚碳酸酯塑料中浸出了双酚A(BPA)。 BPA已显示与雌激素受体结合并诱导雌激素活性,包括刺激MCF-7乳腺癌细胞增殖和诱导孕激素受体表达。这三个例子凸显了研究人员的潜在问题,他们可能无意中将雌激素添加到了实验系统中,混淆了他们的结果。 BPA的发现引起人们对这种雌激素分子可能添加到食品供应中的担忧,因为聚碳酸酯塑料用于食品和饮料包装的多种应用中。尽管我们没有意识到BPA对食品的严重污染,但我们认为应该仔细研究这种可能性。

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