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两代饮用含双酚A饮用水的小鼠输出小管和起始段中水转运相关分子的表达变化

Expressional Changes of Water Transport-related Molecules in the Efferent Ductules and Initial Segment of Mouse Treated with Bisphenol A-Containing Drinking Water for Two Generations.

作者信息

Han Su-Yong, Lee Ki-Ho

机构信息

College of Liberal Arts and Sciences, Anyang University, Incheon 417-833, Republic of Korea.

Department of Biochemistry and Molecular Biology, College of Medicine, Eulji University, Daejeon 301-746, Republic of Korea.

出版信息

Dev Reprod. 2013 Sep;17(3):289-97. doi: 10.12717/DR.2013.17.3.289.

Abstract

Bisphenol A (BPA) is an estrogenic endocrine disrupter. However, depending on a way of treatment, the harmful effects of BPA have not been confirmed. Also, trans-generational effects of BPA on male reproduction are still controversial. Because the reabsorption of testicular fluid in the efferent ductules (ED) and initial segment (IS) is important for sperm maturation, the present study was designed to determine trans-generational effect of BPA administrated orally on expression of water transport-related molecules in the mouse ED and IS. Ethanol-dissolved BPA was diluted in water to be 100 ng (low), 10 μg (medium), and 1 mg/Ml water (high). BPA-containing water was provided for two generations. Expression of ion transporters and water channels in the ED and IS were measured by relative real-time PCR analysis. In the ED, BPA treatment caused expressional increases of carbonic anhydrase II, cystic fibrosis transmembrane regulator, Na(+)/K(+) ATPase α1 subunit, and aquaporin (AQP) 1. No change of Na(+)/H(+) exchange (NHE) 3 expression was detected. BPA treatment at medium dose resulted in an increase of AQP9 expression. In the IS, the highest expressional levels of all molecules tested were observed in medium-dose BPA treatment. Generally, high-dose BPA treatment resulted in a decrease or no change of gene expression. Fluctuation of NHE3 gene expression by BPA treatment at different concentrations was detected. These findings suggest that trans-generational exposure to BPA, even at low dose, could affect gene expression of water-transport related molecules. However, such effects of BPA would be differentially occurred in the ED and IS.

摘要

双酚A(BPA)是一种具有雌激素活性的内分泌干扰物。然而,根据治疗方式的不同,BPA的有害影响尚未得到证实。此外,BPA对雄性生殖的跨代效应仍存在争议。由于输出小管(ED)和起始段(IS)中睾丸液的重吸收对精子成熟很重要,因此本研究旨在确定口服BPA对小鼠ED和IS中与水转运相关分子表达的跨代效应。将乙醇溶解的BPA用水稀释至100 ng(低剂量)、10 μg(中剂量)和1 mg/mL水(高剂量)。含BPA的水供应两代。通过相对实时PCR分析测量ED和IS中离子转运体和水通道的表达。在ED中,BPA处理导致碳酸酐酶II、囊性纤维化跨膜调节因子、Na(+)/K(+) ATP酶α1亚基和水通道蛋白(AQP)1的表达增加。未检测到Na(+)/H(+)交换体(NHE)3表达的变化。中剂量BPA处理导致AQP9表达增加。在IS中,在中剂量BPA处理中观察到所有测试分子的最高表达水平。一般来说,高剂量BPA处理导致基因表达降低或无变化。检测到不同浓度BPA处理对NHE3基因表达的波动影响。这些发现表明,即使是低剂量的BPA跨代暴露也可能影响与水转运相关分子的基因表达。然而,BPA的这种影响在ED和IS中会有差异地出现。

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