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足月人胎盘组织及常用细胞系统中P-糖蛋白、乳腺癌耐药蛋白和多药耐药蛋白的绝对膜蛋白丰度:在基于生理学的胎盘药物处置药代动力学建模中的应用。

Absolute membrane protein abundance of P-glycoprotein, breast cancer resistance protein, and multidrug resistance proteins in term human placenta tissue and commonly used cell systems: Application in physiologically based pharmacokinetic modeling of placental drug disposition.

作者信息

Al-Majdoub Zubida M, Freriksen Jolien J M, Colbers Angela, van den Heuvel Jeroen, Koenderink Jan, Abduljalil Khaled, Achour Brahim, Barber Jill, Greupink Rick, Rostami-Hodjegan Amin

机构信息

Centre for Applied Pharmacokinetic Research, University of Manchester, Manchester, United Kingdom.

Division of Pharmacology and Toxicology, Department of Pharmacy, Radboud University Medical Center, Nijmegen, The Netherlands.

出版信息

Drug Metab Dispos. 2025 Jan;53(1):100007. doi: 10.1124/dmd.124.001824. Epub 2024 Nov 22.

Abstract

The placenta acts as a barrier, excluding noxious substances while actively transferring nutrients to the fetus, mediated by various transporters. This study quantified the expression of key placental transporters in term human placenta (n = 5) and BeWo, BeWo b30, and JEG-3 placenta cell lines. Combining these results with pregnancy physiologically based pharmacokinetic (PBPK) modeling, we demonstrate the utility of proteomic analysis for predicting placental drug disposition and fetal exposure. Using targeted proteomics with quantification concatemer standards, we found significant expression of P-glycoprotein (P-gp), breast cancer resistance protein (BCRP), multidrug resistance protein (MRP) 2, MRP4, and MRP6 in the human placenta (0.05-0.25 pmol/mg membrane protein) with only regional differences observed for P-gp. Unexpectedly, both P-gp and BCRP were below the limit of quantification in the regularly used BeWo cells, indicating that this cell line may not be suitable for the study of placental P-gp and BCRP-mediated transport. In cellular and vesicular overexpression systems, P-gp and BCRP were detectable as expected. Vesicle batches showed consistent P-gp expression correlating with functional activity (N-methyl-quinidine transport). However, BCRP activity (estrone 3-sulfate transport) did not consistently align with expression levels. Incorporating in vitro transporter kinetic data, along with placental transporter abundance, into a PBPK model enabled the evaluation of fetal exposure. Simulation with a hypothetical drug indicated that estimating fetal exposure relies on the intrinsic clearances of relevant transporters. To minimize interlaboratory discrepancies, expression data was generated using consistent proteomic methodologies in the same lab. Integration of this data in pregnancy PBPK modeling offers a promising tool to investigate maternal, placental, and fetal drug exposure. SIGNIFICANCE STATEMENT: This study quantified the expression of key placental transporters in human placenta and various placental cell lines, revealing significant expression variations. By integrating these data with physiologically based pharmacokinetic modeling, the study highlights the importance of transporter abundance data in understanding and predicting placental drug disposition, essential for maternal and fetal health during pregnancy.

摘要

胎盘起着屏障的作用,在各种转运蛋白的介导下,排除有害物质,同时将营养物质积极转运给胎儿。本研究对足月人胎盘(n = 5)以及BeWo、BeWo b30和JEG-3胎盘细胞系中关键胎盘转运蛋白的表达进行了定量分析。将这些结果与基于生理的药代动力学(PBPK)妊娠模型相结合,我们证明了蛋白质组学分析在预测胎盘药物处置和胎儿暴露方面的实用性。使用带有定量串联标准品的靶向蛋白质组学方法,我们发现人胎盘中P-糖蛋白(P-gp)、乳腺癌耐药蛋白(BCRP)、多药耐药蛋白(MRP)2、MRP4和MRP6有显著表达(0.05 - 0.25 pmol/mg膜蛋白),仅观察到P-gp存在区域差异。出乎意料的是,在常用的BeWo细胞中,P-gp和BCRP均低于定量限,这表明该细胞系可能不适用于胎盘P-gp和BCRP介导转运的研究。在细胞和囊泡过表达系统中,P-gp和BCRP如预期那样可被检测到。囊泡批次显示出与功能活性(N-甲基奎尼丁转运)相关的一致的P-gp表达。然而,BCRP活性(硫酸雌酮3-酯转运)与表达水平并不始终一致。将体外转运蛋白动力学数据以及胎盘转运蛋白丰度纳入PBPK模型能够评估胎儿暴露情况。用一种假设药物进行模拟表明,估计胎儿暴露依赖于相关转运蛋白的内在清除率。为了尽量减少实验室间的差异,在同一实验室使用一致的蛋白质组学方法生成表达数据。将这些数据整合到妊娠PBPK模型中为研究母体、胎盘和胎儿的药物暴露提供了一个有前景的工具。意义声明:本研究对人胎盘和各种胎盘细胞系中关键胎盘转运蛋白的表达进行了定量分析,揭示了显著的表达差异。通过将这些数据与基于生理的药代动力学模型相结合,该研究突出了转运蛋白丰度数据在理解和预测胎盘药物处置中的重要性,这对于孕期母婴健康至关重要。

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