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采用胚胎干细胞试验体外检测双酚 A 和金雀异黄素的单独及联合发育毒性。

Individual and combined developmental toxicity assessment of bisphenol A and genistein using the embryonic stem cell test in vitro.

机构信息

Department of Toxicology, School of Public Health, Peking University, Beijing Key Laboratory of Toxicological Research and Risk Assessment for Food Safety, Beijing 100191, China.

出版信息

Food Chem Toxicol. 2013 Oct;60:497-505. doi: 10.1016/j.fct.2013.08.006. Epub 2013 Aug 12.

Abstract

The potential developmental toxicity of environmental estrogenic endocrine disruptors have become a great concern in recent years. In this study, two typical environmental oestrogen, namely, bisphenol A (BPA) and genistein (GEN) were investigated for potential embryotoxicity using the embryonic stem cell test model. Afterwards, a 4×4 full factorial design and the estimated marginal means plot were performed to assess the combined effects of these two compounds. According to the linear discriminant functions and classification criteria, bisphenol A and genistein were classified as weakly embryotoxic and strongly embryotoxic respectively. As for combined effects, the overall interaction between BPA and GEN on embryonic stem cells (ESCs) differentiation was synergistic at low dosages, however, on ESCs and 3T3 cell proliferation, the predominate action was additive. Considering the actual daily intake of these chemicals, it is concluded that BPA alone might not have adverse reproductive or developmental effects on human being. However, given that BPA and GEN do have synergistic effect at low concentration, they may disturb normal embryo development together, which could result in birth defect and behavioral alterations later in life.

摘要

近年来,环境雌激素内分泌干扰物的潜在发育毒性引起了极大关注。在这项研究中,使用胚胎干细胞测试模型研究了两种典型的环境雌激素,即双酚 A(BPA)和染料木黄酮(GEN),以评估其潜在的胚胎毒性。然后,采用 4×4 完全析因设计和估计边际均值图来评估这两种化合物的联合效应。根据线性判别函数和分类标准,双酚 A 和染料木黄酮分别被归类为弱胚胎毒性和强胚胎毒性。至于联合效应,BPA 和 GEN 对胚胎干细胞(ESCs)分化的整体相互作用在低剂量下是协同的,然而,对 ESCs 和 3T3 细胞增殖的作用主要是相加的。考虑到这些化学物质的实际日摄入量,我们得出结论,BPA 单独对人类生殖或发育不会产生不良影响。然而,鉴于 BPA 和 GEN 在低浓度下具有协同作用,它们可能会一起干扰正常的胚胎发育,从而导致日后的出生缺陷和行为改变。

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