» Articles » PMID: 34873775

Functional Role and Regulation of Permeability-glycoprotein (P-gp) in the Fetal Membrane During Drug Transportation

Overview
Date 2021 Dec 7
PMID 34873775
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

Objective: Na /H exchange regulatory factor-1 (NHERF-1) is a class I PDZ (PSD95/Discs-large/ZO-1) binding protein involved in cell-surface expression and stabilization of transporter proteins, including permeability-glycoprotein (P-gp) in various cell types. P-gp, expressed in placental trophoblasts, is an efflux transporter protein that influences the pharmacokinetics of various drugs used during pregnancy. Previously we have reported that NHERF-1 regulates fetal membrane inflammation. However, the role of NHERF-1 in regulating P-gp in the fetal membrane during drug transportation remains unclear. This study determined the interplay between NHERF-1 and P-gp in human fetal membrane cells.

Methods: Fetal membranes from normal, term cesareans were screened for P-gp by immunohistochemistry (IHC). Chorionic trophoblast (CTC), with the highest expression of P-gp among fetal membrane cells, was further used to test interactive properties between NHERF-1 and P-gp. BeWo (placental trophoblast cell line) cells were used as a control. Immunoprecipitation (IP) of CTC lysates using the P-gp antibody followed by western blot determined co-precipitation of NHERF-1. Silencing NHERF-1 using small interfering RNA further tested the relevance of NHERF-1 in P-gp expression and function in CTC and BeWo cells. NHERF-1 regulation of P-gp's efflux function (drug resistance) was further tested using the ENZO efflux dye kit.

Results: Immunohistochemistry localized, and western blot confirmed P-gp in human fetal membranes, primarily in the CTC with limited expression in the amnion epithelial layer. P-gp expression in the membranes was similar to that seen in the placenta. IP data showed P-gp co-precipitating with NHERF1. Silencing of NHERF-1 resulted in significant drug resistance suggesting P-gp function mediated through NHERF1 in CTCs.

Conclusion: Proinflammatory mediator NHERF-1 regulates P-gp and control drug transportation across the fetal membranes. Our data suggest a novel functional role for fetal membranes during pregnancy. Besides the placenta, fetal membranes may also regulate efflux of materials at the feto-maternal interface and control drug transport during pregnancy.

Citing Articles

Determining Sex-Specific Gene Expression Differences in Human Chorion Trophoblast Cells.

Goncharov D, Lintao R, Urrabaz-Garza R, Radnaa E, Kammala A, Richardson L Int J Mol Sci. 2025; 26(5).

PMID: 40076861 PMC: 11900912. DOI: 10.3390/ijms26052239.


PGRMC2 and HLA-G regulate immune homeostasis in a microphysiological model of human maternal-fetal membrane interface.

Lintao R, Richardson L, Kumar Kammala A, Chapa J, Yunque-Yap D, Khanipov K Commun Biol. 2024; 7(1):1041.

PMID: 39179795 PMC: 11344061. DOI: 10.1038/s42003-024-06740-2.


Endocrine-disrupting compounds and their impact on human placental function: evidence from placenta organ-on-chip studies.

Vidal Jr M, Richardson L, Kumar Kammala A, Kim S, Lam P, Cherukuri R Lab Chip. 2024; 24(6):1727-1749.

PMID: 38334486 PMC: 10998263. DOI: 10.1039/d3lc00998j.


Microfluidic technology and simulation models in studying pharmacokinetics during pregnancy.

Kammala A, Richardson L, Radnaa E, Han A, Menon R Front Pharmacol. 2023; 14:1241815.

PMID: 37663251 PMC: 10469630. DOI: 10.3389/fphar.2023.1241815.


The Impact of P-Glycoprotein on Opioid Analgesics: What's the Real Meaning in Pain Management and Palliative Care?.

Coluzzi F, Scerpa M, Rocco M, Fornasari D Int J Mol Sci. 2022; 23(22).

PMID: 36430602 PMC: 9695906. DOI: 10.3390/ijms232214125.


References
1.
Menon R, Moore J . Fetal Membranes, Not a Mere Appendage of the Placenta, but a Critical Part of the Fetal-Maternal Interface Controlling Parturition. Obstet Gynecol Clin North Am. 2020; 47(1):147-162. DOI: 10.1016/j.ogc.2019.10.004. View

2.
Menon R . Human fetal membranes at term: Dead tissue or signalers of parturition?. Placenta. 2016; 44:1-5. PMC: 5375105. DOI: 10.1016/j.placenta.2016.05.013. View

3.
Walsh D, Nolin T, Friedman P . Drug Transporters and Na+/H+ Exchange Regulatory Factor PSD-95/Drosophila Discs Large/ZO-1 Proteins. Pharmacol Rev. 2015; 67(3):656-80. PMC: 4485015. DOI: 10.1124/pr.115.010728. View

4.
Menon R . Initiation of human parturition: signaling from senescent fetal tissues via extracellular vesicle mediated paracrine mechanism. Obstet Gynecol Sci. 2019; 62(4):199-211. PMC: 6629986. DOI: 10.5468/ogs.2019.62.4.199. View

5.
Bushau-Sprinkle A, Lederer E . New roles of the Na/H exchange regulatory factor 1 scaffolding protein: a review. Am J Physiol Renal Physiol. 2020; 318(3):F804-F808. PMC: 7395471. DOI: 10.1152/ajprenal.00467.2019. View