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首页> 外文期刊>Molecular pharmaceutics >Impact of Zn2+ on ABC Transporter Function in Intact Isolated Rat Brain Microvessels, Human Brain Capillary Endothelial Cells, and in Rat in Vivo
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Impact of Zn2+ on ABC Transporter Function in Intact Isolated Rat Brain Microvessels, Human Brain Capillary Endothelial Cells, and in Rat in Vivo

机译:Zn2 +对ABC转运蛋白功能在完整分离的大鼠脑微血管,人脑毛细血管内皮细胞和体内大鼠中的影响

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ABC transporters act as efflux pumps, thereby influencing the pharmacokinetics and efficacy of many drugs. Zinc (Zn) is an essential trace element contributing to cellular growth and differentiation. It is increasingly recognized as an intracellular messenger. The present study aims at investigating the impact of Zn2+ on the function and regulation of ABC transporters at the blood-brain barrier (BBB). ABC transporter function was first studied in isolated rat brain capillaries. Zn2+ rapidly stimulated the activity of the multidrug resistance-related protein 2 (Mrp2), p-glycoprotein (P-gp), and breast cancer resistance protein (Bcrp). These short-term effects were independent of transporter de novo synthesis but based on Zn2+ triggering intracellular signaling to stimulate basal transport activity. Studies focused on Mrp2 and P-gp showed that Zn2+ induced signaling through an endothelin receptor type B (ETB)/nitric oxide synthase (NOS)/protein kinase C (PKC) pathway and caused, specifically, an activation of the isoform PKC alpha. Studies revealed signaling through the phosphatidylinositol 3-kinase (PI3K)/mechanistic target of rapamycin (mTOR) pathway, as well as induction of the downstream target serum- and glucocorticoid-inducible kinase 1 (SGK1). Short-term effects of Zn2+ were also demonstrated in human hCMEC/D3 cells. An initial in vivo study in rats suggested enhanced P-gp transport activity at the BBB due to elevated Zn2+ plasma levels. This work provides the first evidence for Zn2+ being a regulator of basal ABC transporter activity at the BBB, driving a rapid and nongenomic stimulation of transport function.
机译:ABC运输司机充当流出泵,从而影响了许多药物的药代动力学和功效。锌(Zn)是有助于细胞生长和分化的必要痕量元素。它越来越被认为是细胞内信使。本研究旨在调查Zn2 +对血脑屏障(BBB)的ABC转运蛋白功能和调节的影响。 ABC转运仪首先在分离的大鼠脑毛细血管中研究过。 Zn2 +迅速刺激多药抗性相关蛋白2(MRP2),p-糖蛋白(P-GP)和乳腺癌抗性蛋白(BCRP)的活性。这些短期效应独立于转运蛋白的新型合成,而是基于Zn2 +触发细胞内信号传导刺激基础传输活性。专注于MRP2和P-GP的研究表明,通过内皮素受体型B(ETB)/一氧化氮合酶(NOS)/蛋白激酶C(PKC)途径和特异性地,Zn2 +诱导信号传导,具体地是同种型PKCα的活化。研究通过磷脂酰肌醇3-激酶(PI3K)/机械靶的雷帕霉素(MTOR)途径的信号传导,以及诱导下游靶血清和糖皮质激素诱导型激酶1(SGK1)。在人HCMEC / D3细胞中还证明了Zn2 +的短期效应。由于升高的Zn2 +等离子体水平,大鼠的大鼠中的初始体内研究表明BBB的增强的P-GP传输活性。这项工作提供了Zn2 +的第一个证据是BBB的基础ABC转运蛋白活动的调节器,驱动了运输功能的快速和愈合。

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