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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Organic anion transporter 3 mediates the efflux transport of an amphipathic organic anion, dehydroepiandrosterone sulfate, across the blood-brain barrier in mice.
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Organic anion transporter 3 mediates the efflux transport of an amphipathic organic anion, dehydroepiandrosterone sulfate, across the blood-brain barrier in mice.

机译:有机阴离子转运蛋白3介导两亲性有机阴离子硫酸脱氢表雄酮硫酸盐通过小鼠血脑屏障的外排转运。

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摘要

The present study investigated the efflux transport systems of organic anions across the blood-brain barrier (BBB) using dehydroepiandrosterone sulfate (DHEAS) as a probe. The elimination of DHEAS from the brain after microinjection into the cerebral cortex was characterized in wild-type mice and mice with deficiency of well characterized organic anion transporters, organic anion-transporting polypeptide 1a4 (Oatp1a4)/Slco1a4 and organic anion transporter 3 (Oat3)/Slc22a8, at the BBB. The saturable efflux of DHEAS from the brain was completely inhibited by probenecid, benzylpenicillin, and estrone-3-sulfate and moderately inhibited by taurocholate and p-aminohippurate (50-57%). Uptake of DHEAS and estrone-3-sulfate was greater in murine Oat3 cRNA-injected oocytes than that in water-injected oocytes. Efflux of these compounds from the brain was significantly delayed in Oat3(-/-) mice compared with that in wild-type mice, indicating that indeed Oat3 is functionally important in vivo. Furthermore, probenecid and taurocholate inhibited DHEAS efflux completely in Oat3(-/-) mice. Contrary to the past report in rats that suggested involvement of Oatp1a4, specific uptake of DHEAS and estrone-3-sulfate by murine Oatp1a4 was not detected in vitro, and efflux of both compounds from the brain was not altered in Oatp1a4(-/-) mice. There was no significant difference in the uptake of DHEAS by brain slices prepared from wild-type, Oatp1a4(-/-), and Oat3(-/-) mice. Taken together, these results suggest that Oat3 plays a significant role in the efflux of steroid conjugates across the BBB in mice and that the BBB also expresses other unknown organic anion transporters for the efflux of DHEAS. Transport mechanisms of organic anions at the BBB are far more diverse than they were assumed to be.
机译:本研究使用硫酸脱氢表雄酮(DHEAS)作为探针,研究了有机阴离子穿过血脑屏障(BBB)的外向转运系统。在野生型小鼠和缺乏特征明确的有机阴离子转运蛋白,有机阴离子转运多肽1a4(Oatp1a4)/ Slco1a4和有机阴离子转运蛋白3(Oat3)缺乏的小鼠中,对在大脑皮层显微注射后从大脑中消除DHEAS进行了表征。 / Slc22a8,在BBB。 DHEAS从脑中的饱和流出被丙磺舒,苄青霉素和硫酸雌酮3完全抑制,而牛磺胆酸盐和对氨基马尿酸盐则被中度抑制(50-57%)。小鼠Oat3 cRNA注射的卵母细胞中DHEAS和雌酮-3-硫酸盐的摄入量大于水注射的卵母细胞。与野生型小鼠相比,Oat3(-/-)小鼠大脑中这些化合物的流出明显延迟,这表明Oat3在体内确实很重要。此外,丙磺舒和牛磺胆酸盐完全抑制Oat3(-/-)小鼠中的DHEAS外流。与过去的大鼠中提示Oatp1a4参与的报告相反,在体外未检测到鼠Oatp1a4对DHEAS和雌酮-3-硫酸酯的特异性吸收,并且Oatp1a4(-/-)中两种化合物从脑中的流出没有改变。老鼠。从野生型,Oatp1a4(-/-)和Oat3(-/-)小鼠制备的脑片对DHEAS的摄取没有显着差异。综上所述,这些结果表明,Oat3在类固醇结合物穿过小鼠BBB的流出中起着重要作用,并且BBB还表达了其他未知的有机阴离子转运蛋白,用于DHEAS的流出。 BBB上有机阴离子的传输机制比假设的要多样化得多。

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