Gibert Yann, Sassi-Messai Sana, Fini Jean-Baptiste, Bernard Laure, Zalko Daniel, Cravedi Jean-Pierre, Balaguer Patrick, Andersson-Lendahl Monika, Demeneix Barbara, Laudet Vincent
Institut de Génomique Fonctionnelle de Lyon; Université de Lyon; Université Lyon 1; CNRS; INRA; Ecole Normale Supérieure de Lyon; 46 allée d'Italie, 69364 Lyon Cedex 07, France.
BMC Dev Biol. 2011 Jan 26;11:4. doi: 10.1186/1471-213X-11-4.
The plastic monomer and plasticizer bisphenol A (BPA), used for manufacturing polycarbonate plastic and epoxy resins, is produced at over 2.5 million metric tons per year. Concerns have been raised that BPA acts as an endocrine disruptor on both developmental and reproductive processes and a large body of evidence suggests that BPA interferes with estrogen and thyroid hormone signaling. Here, we investigated BPA effects during embryonic development using the zebrafish and Xenopus models.
We report that BPA exposure leads to severe malformations of the otic vesicle. In zebrafish and in Xenopus embryos, exposure to BPA during the first developmental day resulted in dose-dependent defects in otolith formation. Defects included aggregation, multiplication and occasionally failure to form otoliths. As no effects on otolith development were seen with exposure to micromolar concentrations of thyroid hormone, 17-ß-estradiol or of the estrogen receptor antagonist ICI 182,780 we conclude that the effects of BPA are independent of estrogen receptors or thyroid-hormone receptors. Na+/K+ ATPases are crucial for otolith formation in zebrafish. Pharmacological inhibition of the major Na+/K+ ATPase with ouabain can rescue the BPA-induced otolith phenotype.
The data suggest that the spectrum of BPA action is wider than previously expected and argue for a systematic survey of the developmental effects of this endocrine disruptor.
用于制造聚碳酸酯塑料和环氧树脂的塑料单体及增塑剂双酚A(BPA)的年产量超过250万吨。人们担心双酚A在发育和生殖过程中充当内分泌干扰物,大量证据表明双酚A会干扰雌激素和甲状腺激素信号传导。在此,我们使用斑马鱼和非洲爪蟾模型研究了双酚A在胚胎发育过程中的作用。
我们报告称,双酚A暴露会导致耳泡严重畸形。在斑马鱼和非洲爪蟾胚胎中,在发育的第一天暴露于双酚A会导致耳石形成出现剂量依赖性缺陷。缺陷包括耳石聚集、增多,偶尔还会出现耳石无法形成的情况。由于暴露于微摩尔浓度的甲状腺激素、17-β-雌二醇或雌激素受体拮抗剂ICI 182,780时未观察到对耳石发育的影响,我们得出结论,双酚A的作用独立于雌激素受体或甲状腺激素受体。钠钾ATP酶对斑马鱼耳石的形成至关重要。用哇巴因对主要的钠钾ATP酶进行药理学抑制可挽救双酚A诱导的耳石表型。
数据表明双酚A的作用范围比之前预期的更广,这支持对这种内分泌干扰物的发育影响进行系统调查。