首页> 外文期刊>Pharmacology: International Journal of Experimental and Clinical Pharmacology >Comparison of furosemide and vinblastine secretion from cell lines overexpressing multidrug resistance protein (P-glycoprotein) and multidrug resistance-associated proteins (MRP1 and MRP2).
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Comparison of furosemide and vinblastine secretion from cell lines overexpressing multidrug resistance protein (P-glycoprotein) and multidrug resistance-associated proteins (MRP1 and MRP2).

机译:比较过表达多药耐药蛋白(P-糖蛋白)和多药耐药相关蛋白(MRP1和MRP2)的细胞系中呋塞米和长春碱的分泌。

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摘要

Recent studies in our laboratory have shown that the loop diuretic, furosemide, is actively secreted by Caco-2 cells and rat jejunal tissue. This active secretion could be the result of efflux transporters such as P-gp, MRP1 or MRP2 (cMOAT). To determine if any of these transporters is responsible for the secretion of furosemide, we compared directional permeability in the wild-type cell lines, MDCK strains I and II, and LLC-PK1, vs. cell lines that overexpress a single transporter, in both the presence and absence of various inhibitors, for furosemide as compared to vinblastine. Sulfinpyrazone significantly inhibited the transport of vinblastine in MRP2 expressing cells, but not the wild-type controls. Vinblastine could not be confirmed as a substrate of MRP1. We were also unable to demonstrate that any particular transporter affected furosemide in excess of the background effects of endogenous transporters in the parental cell lines. Furosemide secretion from these kidney-derived cell lines is probably not the primary result of any of the well characterized efflux transporters (P-gp, MRP1 or MRP2), although they may still play a role in the observed Caco-2 secretion. This equivocal result acknowledges the difficulty in trying to determine the effect of a single protein in a complicated expression system.
机译:我们实验室中的最新研究表明,aco利尿剂速尿是由Caco-2细胞和大鼠空肠组织主动分泌的。这种主动分泌可能是外排转运蛋白如P-gp,MRP1或MRP2(cMOAT)的结果。为了确定这些转运蛋白中的任何一个是否负责呋塞米的分泌,我们比较了野生型细胞系,MDCK株I和II和LLC-PK1与过表达单个转运蛋白的细胞系中的方向渗透性与长春碱相比,速尿有多种抑制剂的存在与否。磺胺吡嗪显着抑制长春碱在表达MRP2的细胞中的转运,但不能抑制野生型对照。长春碱不能被确认为MRP1的底物。我们也无法证明亲代细胞系中任何特定的转运蛋白对速尿的影响超过内源性转运蛋白的背景影响。这些肾源性细胞系中的呋塞米分泌可能不是任何特征明确的外向转运蛋白(P-gp,MRP1或MRP2)的主要结果,尽管它们仍可能在观察到的Caco-2分泌中起作用。这个模棱两可的结果承认了在复杂的表达系统中尝试确定单个蛋白质的作用的困难。

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