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多种P-糖蛋白(P-gp)探针底物的功能评估:细胞系和调节剂浓度对P-gp活性的影响。

Functional assessment of multiple P-glycoprotein (P-gp) probe substrates: influence of cell line and modulator concentration on P-gp activity.

作者信息

Taub Mitchell E, Podila Lalitha, Ely Diane, Almeida Iliana

机构信息

Drug Metabolism & Pharmacokinetics, Boehringer Ingelheim Pharmaceuticals, Inc., 900 Ridgebury Rd., P. O. Box 368, Ridgefield, CT 06877-0368, USA.

出版信息

Drug Metab Dispos. 2005 Nov;33(11):1679-87. doi: 10.1124/dmd.105.005421. Epub 2005 Aug 10.

Abstract

Compounds known to modulate P-glycoprotein (P-gp) activity were evaluated in cell monolayers expressing P-gp for their effects on the secretory transport of P-gp substrates paclitaxel, vinblastine, and digoxin. Paclitaxel has been proposed to selectively interact with a binding site on P-gp that is distinct from the vinblastine and digoxin-binding site. Using Madin-Darby canine kidney (MDCK)-multidrug resistance-1 (MDR1), MDCK-wild-type (WT), and Caco-2 cell monolayers, the basal-to-apical (BL-AP) apparent permeability (Papp) of [3H]paclitaxel, [3H]vinblastine, and [3H]digoxin in the presence of various concentrations of a series of structurally diverse P-gp substrates and modulators of P-gp function were determined. MDCK-WT cell monolayers demonstrated active secretory transport of all P-gp substrate probes, although the sensitivity to inhibition by verapamil was lower than that demonstrated in MDCK-MDR1 cell monolayers. When evaluated as competitive inhibitors, several known P-gp substrates had no effect or only a slight modulatory effect on the BL-AP Papp of all probe substrates in MDCK-MDR1 cells. The secretory transport of P-gp substrates in MDCK-WT cells was more sensitive to inhibition by known P-gp modulators compared with MDCK-MDR1 cells. Low concentrations of ketoconazole (1-3 microM) activated the BL-AP Papp of [3H]vinblastine and [3H]digoxin in MDCK-MDR1 cells but not in MDCK-WT or Caco-2 cells. Determination of secretory transport in P-gp expressing cell monolayers, such as MDCK-MDR1 and Caco-2, may be complicated by substrate cooperativity and allosteric binding, which may result in the activation of P-gp. In addition, expression of other efflux transporters in these cell lines introduces additional complexity in distinguishing which transporter is responsible for substrate recognition and transport.

摘要

在表达P-糖蛋白(P-gp)的细胞单层中评估了已知可调节P-gp活性的化合物对P-gp底物紫杉醇、长春碱和地高辛分泌转运的影响。有人提出紫杉醇可选择性地与P-gp上一个不同于长春碱和地高辛结合位点的结合位点相互作用。使用Madin-Darby犬肾(MDCK)-多药耐药-1(MDR1)、MDCK-野生型(WT)和Caco-2细胞单层,在一系列结构多样的P-gp底物和P-gp功能调节剂的不同浓度存在下,测定了[3H]紫杉醇、[3H]长春碱和[3H]地高辛的基底到顶端(BL-AP)表观渗透率(Papp)。MDCK-WT细胞单层显示出所有P-gp底物探针的活跃分泌转运,尽管对维拉帕米抑制的敏感性低于MDCK-MDR1细胞单层。当作为竞争性抑制剂进行评估时,几种已知的P-gp底物对MDCK-MDR1细胞中所有探针底物的BL-AP Papp没有影响或只有轻微的调节作用。与MDCK-MDR1细胞相比,MDCK-WT细胞中P-gp底物的分泌转运对已知P-gp调节剂的抑制更敏感。低浓度的酮康唑(1-3 microM)可激活MDCK-MDR1细胞中[3H]长春碱和[3H]地高辛的BL-AP Papp,但在MDCK-WT或Caco-2细胞中则不能。在表达P-gp的细胞单层(如MDCK-MDR1和Caco-2)中测定分泌转运可能会因底物协同作用和变构结合而复杂化,这可能导致P-gp的激活。此外,这些细胞系中其他外排转运蛋白的表达在区分哪个转运蛋白负责底物识别和转运方面引入了额外的复杂性。

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