Jin H, Audus K L
Department of Pharmaceutical Chemistry, School of Pharmacy, University of Kansas, 1251 Wescoe Hall Drive, Lawrence, KS 66045, USA.
Placenta. 2005 Apr;26 Suppl A:S96-S103. doi: 10.1016/j.placenta.2005.01.016.
Bisphenol A (BPA) is a monomer of polycarbonate plastics that has estrogenic activities and has been shown to be a substrate for multidrug resistant efflux mechanisms, specifically, P-glycoprotein. Since the natural hormone estrogen reverses multidrug resistance in some cell types, we hypothesized that BPA might have a similar activity in trophoblasts. We have used BeWo cells as an in vitro model for human trophoblasts and calcein AM as a substrate for drug efflux mechanism to characterize BPA interactions with placental P-glycoprotein. We found that chronic exposure of BeWo cells to BPA did not alter intracellular calcein accumulation in a fashion that would be reflective of changes in P-glycoprotein expression. Immunoblots affirmed that BPA had small effects on P-glycoprotein expression. However, BeWo cells acutely exposed to BPA pretreatment were observed to have a significantly decreased calcein accumulation. Addition of cyclosporin A, a P-glycoprotein inhibitor and substrate, completely reversed BPA's effects on calcein accumulation and resulted in a net increase, relative to controls, in calcein accumulation by the BeWo cells. BPA was found not to stimulate P-gp ATPase or alter intracellular esterases mediating calcein release from calcein AM. Therefore, our results suggested that BPA stimulated drug efflux by BeWo cells probably by direct effects on P-glycoprotein.
双酚A(BPA)是聚碳酸酯塑料的单体,具有雌激素活性,并且已被证明是多药耐药外排机制的底物,具体而言,是P-糖蛋白的底物。由于天然激素雌激素可逆转某些细胞类型中的多药耐药性,我们推测BPA在滋养层细胞中可能具有类似活性。我们使用BeWo细胞作为人滋养层细胞的体外模型,并使用钙黄绿素AM作为药物外排机制的底物,以表征BPA与胎盘P-糖蛋白的相互作用。我们发现,将BeWo细胞长期暴露于BPA不会以反映P-糖蛋白表达变化的方式改变细胞内钙黄绿素的积累。免疫印迹证实BPA对P-糖蛋白表达的影响很小。然而,观察到急性暴露于BPA预处理的BeWo细胞中钙黄绿素的积累显著减少。添加环孢素A(一种P-糖蛋白抑制剂和底物)可完全逆转BPA对钙黄绿素积累的影响,并导致BeWo细胞中钙黄绿素的积累相对于对照净增加。发现BPA不会刺激P-糖蛋白ATP酶或改变介导钙黄绿素从钙黄绿素AM释放的细胞内酯酶。因此,我们的结果表明,BPA可能通过对P-糖蛋白的直接作用刺激BeWo细胞的药物外排。