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Bisphenol A disrupts the temporal pattern of histofunctional changes in the female reproductive tract of Caiman latirostris

机译:双酚A破坏了凯曼拉脱索岩女性生殖道的组织官能变化的时间模式

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Highlights ? The oviduct is highly sensitive to EDC exposure in early postnatal development. ? E2- and BPA-exposed caimans show precocious oviduct histofunctional differentiation. ? Negative impact of plastic on aquatic ecosystems evidenced by BPA-induced effects. Abstract Recently, we have described the ontogeny of histofunctional differentiation changes in the oviduct of Caiman latirostris . The expression of estrogen receptor alpha and progesterone receptor shows that the caiman oviduct could be a target of the action of xenoestrogens such as the widely environmentally present Bisphenol A (BPA), early in life. The aims of this study were: to complement oviduct characterization by establishing the ontogenetic changes in androgen receptor (AR) expression and assessing the effects of early postnatal exposure to 17-β-estradiol (E2) or BPA on the histofunctional features of the oviduct . AR was expressed in all the stages studied. The spatial pattern of AR immunostaining changed from neonatal to juvenile caimans. In the luminal epithelium, changes were at the subcellular level, from cytoplasmic to nuclear. In the subepithelium, although both cytoplasmic and nuclear AR expression was observed, changes were mainly at tissue level, from the subepithelial compartment to the outer muscular layer. The oviduct was highly sensitive to E2 and BPA at the early postnatal developmental stage. E2- and BPA-exposed caimans showed increased luminal epithelial height and higher proliferative activity. Changes in histomorphological features (measured by a scoring system), steroid hormone receptors, collagen remodeling and muscle-associated proteins suggest a precocious oviduct histofunctional differentiation in E2- and BPA-exposed caimans. The modification of the temporal pattern of oviductal biomarkers suggests that organizational changes could impair C. latirostris reproductive health later in life. The alterations in the caiman female reproductive tract exposed to BPA highlight the importance of preserving aquatic environments from plastic pollution.
机译:强调 ?产卵对产后早期发育中的EDC暴露非常敏感。还E2和BPA暴露的凯曼人显示出早熟的输卵管组织官能分化。还BPA诱导效应证明了塑料对水生生态系统的负面影响。摘要最近,我们已经描述了凯曼拉脱塞特里斯的输卵管中的组织官能分化变化的组织发生。雌激素受体α和孕酮受体的表达表明,凯曼输卵管可以是异雌激素的作用,例如广泛环境存在的双酚A(BPA),在生命期间。本研究的目的是:通过建立雄激素受体(AR)表达的植入变化并评估早期出生地暴露于17-β-雌二醇(E2)或BPA对输卵管组织特征的影响来补充输卵管表征。在研究的所有阶段表达了AR。 AR免疫染色的空间模式从新生儿变为少年凯曼人。在腔上皮内,从细胞质到核的亚细胞水​​平变化。在亚本粒中,虽然观察到细胞质和核酸核酸的表达,但是从龈上池到外肌肉层的龈上分离,变化主要是组织水平。产卵对早期产后阶段的E2和BPA高度敏感。 E2-和BPA暴露的Caimans表现出增加的腔上皮高度和更高的增殖活性。组织形态学特征的变化(由评分系统测量),类固醇激素受体,胶原重塑和肌肉相关蛋白表明E2-和BPA暴露的凯曼人中的早期输卵管组织官能分化。产卵生物标志物的时间模式的修改表明,组织变化可能会损害生命后期的C. Latirostris生殖健康。暴露于BPA的凯曼女性生殖道的改变突显了保护水生环境免受塑料污染的重要性。

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