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首页> 外文期刊>International Journal of Molecular Sciences >Urinary Dopamine as a Potential Index of the Transport Activity of Multidrug and Toxin Extrusion in the Kidney
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Urinary Dopamine as a Potential Index of the Transport Activity of Multidrug and Toxin Extrusion in the Kidney

机译:尿多巴胺作为肾脏中多种药物和毒素挤压转运活动的潜在指标

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摘要

Dopamine is a cationic natriuretic catecholamine synthesized in proximal tubular cells (PTCs) of the kidney before secretion into the lumen, a key site of its action. However, the molecular mechanisms underlying dopamine secretion into the lumen remain unclear. Multidrug and toxin extrusion (MATE) is a H + /organic cation antiporter that is highly expressed in the brush border membrane of PTCs and mediates the efflux of organic cations, including metformin and cisplatin, from the epithelial cells into the urine. Therefore, we hypothesized that MATE mediates dopamine secretion, a cationic catecholamine, into the tubule lumen, thereby regulating natriuresis. Here, we show that [ 3 H]dopamine uptake in human (h) MATE1-, hMATE-2K- and mouse (m) MATE-expressing cells exhibited saturable kinetics. Fluid retention and decreased urinary excretion of dopamine and Na + were observed in Mate1 -knockout mice compared to that in wild-type mice. Imatinib, a MATE inhibitor, inhibited [ 3 H]dopamine uptake by hMATE1-, hMATE2-K- and mMATE1-expressing cells in a concentration-dependent manner. At clinically-relevant concentrations, imatinib inhibited [ 3 H]dopamine uptake by hMATE1- and hMATE2-K-expressing cells. The urinary excretion of dopamine and Na + decreased and fluid retention occurred in imatinib-treated mice. In conclusion, MATE transporters secrete renally-synthesized dopamine, and therefore, urinary dopamine has the potential to be an index of the MATE transporter activity.
机译:多巴胺是一种阳离子利钠儿茶酚胺,在分泌到管腔之前是在肾脏的近端肾小管细胞(PTC)中合成的,这是其作用的关键部位。然而,仍不清楚多巴胺分泌进入管腔的分子机制。多药和毒素挤出(MATE)是一种H + /有机阳离子反转运蛋白,在PTC的刷状缘膜中高度表达,并介导包括二甲双胍和顺铂在内的有机阳离子从上皮细胞向尿液的流出。因此,我们假设MATE介导多巴胺分泌,阳离子儿茶酚胺进入小管腔,从而调节利尿作用。在这里,我们显示人(h)MATE1,hMATE-2K和小鼠(m)MATE表达细胞中的[3 H]多巴胺摄取表现出饱和的动力学。与野生型小鼠相比,在Mate1-敲除小鼠中观察到了液体滞留和多巴胺和Na +尿排泄减少。伊马替尼(一种MATE抑制剂)以浓度依赖的方式抑制hMATE1,hMATE2-K和mMATE1表达细胞的[3 H]多巴胺摄取。在临床相关浓度下,伊马替尼抑制hMATE1和hMATE2-K表达细胞摄取[3 H]多巴胺。在伊马替尼治疗的小鼠中,多巴胺和Na +的尿排泄减少,并且出现了液体retention留。总之,MATE转运蛋白分泌肾合成的多巴胺,因此,尿多巴胺有可能成为MATE转运蛋白活性的指标。

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