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A Ternary Mixture of Common Chemicals Perturbs Benign Human Breast Epithelial Cells More Than the Same Chemicals Do Individually

机译:常见化学物质的三元混合物比单独使用相同化学物质的人乳腺良性上皮细胞更容易受到干扰

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摘要

As a continuous source of hormonal stimulation, environmentally ubiquitous estrogenic chemicals, ie, xenoestrogens (XEs), are a potential risk factor for breast carcinogenesis. Given their wide distribution in the environment and the fact that bisphenol-A (BPA), methylparaben (MP), and perfluorooctanoic acid (PFOA) are uniformly detected in unselected body fluid samples, it must be assumed that humans are simultaneously exposed to these chemicals almost daily. We studied the effects of a ternary mixture of BPA, MP, and PFOA on benign breast epithelial cells at the range of concentrations observed for single chemicals in human samples. Measurements of exposure impact relevant to the breast were based on endpoints associated with “hallmarks” of cancer and “key characteristics” of carcinogens. These included modulation of total estrogen receptor (ER)α, phosphorylated ERα (pERα), total ERβ, S-phase induction, and apoptotic evasion. Data from live cell measurements were fit to a log-linear dose-response model. Concentration-dependent reduction of ERβ and apoptosis evasion was observed concurrently with the induction of ERα, pERα, and S-phase fraction, and an increased rate of cell proliferation. Beyond additive effects predicted by the sum of individual test XEs, mixture treatment demonstrated synergism for the ERβ and apoptosis suppression phenotypes (p > .001). Nonmalignant breast cells were more sensitive than commonly used breast cancer lines to XE treatment in 3 of 5 endpoints. All observations were validated with cells isolated from the normal breast tissue of 14 individuals. At relatively low concentrations, a chemical mixture has striking effects on normal cell function that are missed by evaluation of single components.
机译:作为激素刺激的连续来源,环境无处不在的雌激素化学物质,即异种雌激素(XEs),是乳腺癌致癌的潜在危险因素。考虑到它们在环境中的广泛分布,以及在未经选择的体液样品中均检测到双酚A(BPA),对羟基苯甲酸甲酯(MP)和全氟辛酸(PFOA)的事实,必须假定人类同时接触了这些化学物质几乎每天。我们研究了在人类样品中单一化学物质所观察到的浓度范围内,BPA,MP和PFOA三元混合物对乳腺良性上皮细胞的影响。与乳房相关的暴露影响的测量基于与癌症的“标志”和致癌物的“关键特征”相关的终点。这些包括调节总雌激素受体(ER)α,磷酸化ERα(pERα),总ERβ,S期诱导和凋亡逃逸。来自活细胞测量的数据适合对数线性剂量反应模型。在诱导ERα,pERα和S期组分的同时,还观察到了ERβ的浓度依赖性降低和细胞凋亡逃逸,并且细胞增殖速率增加。除了个别测试XE的总和所预测的累加效应外,混合处理还证明了ERβ和凋亡抑制表型的协同作用(p> .001)。在5个终点中的3个终点中,非恶性乳腺癌细胞比常用的乳腺癌细胞对XE治疗更敏感。所有观察结果均由从14个人的正常乳腺组织中分离的细胞验证。在相对较低的浓度下,化学混合物对正常细胞的功能具有惊人的影响,而单个成分的评估却忽略了这种影响。

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