Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives
Transport of drugs across biological barriers has been a subject of study for decades. The discovery and characterization of proteins that confer the barrier properties of endothelia and epithelia, including tight junction proteins and membrane transporters belonging to the ATP-binding cassette (ABC...
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doaj-4534f634bdb04090a856143e71f8a84e2020-11-25T00:44:16ZengFrontiers Media S.A.Frontiers in Physiology1664-042X2018-11-01910.3389/fphys.2018.01502415128Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and PerspectivesPablo Torres-Vergara0Pablo Torres-Vergara1Carlos Escudero2Carlos Escudero3Carlos Escudero4Jeffrey Penny5Department of Pharmacy, Faculty of Pharmacy, University of Concepción, Concepción, ChileGroup of Research and Innovation in Vascular Health (GRIVAS Health), Chillán, ChileGroup of Research and Innovation in Vascular Health (GRIVAS Health), Chillán, ChileVascular Physiology Laboratory, Department of Basic Sciences, Faculty of Basic Sciences, Universidad del Bío-Bío, Chillán, ChileRed Iberoamericana de Alteraciones Vasculares Asociadas a Trastornos del Embarazo (RIVA-TREM), Chillán, ChileDivision of Pharmacy and Optometry, School of Health Sciences, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester, United KingdomTransport of drugs across biological barriers has been a subject of study for decades. The discovery and characterization of proteins that confer the barrier properties of endothelia and epithelia, including tight junction proteins and membrane transporters belonging to the ATP-binding cassette (ABC) and Solute Carrier (SLC) families, represented a significant step forward into understanding the mechanisms that govern drug disposition. Subsequently, numerous studies, including both pre-clinical approaches and clinical investigations, have been carried out to determine the influence of physiological and pathological states on drug disposition. Importantly, there has been increasing interest in gaining a better understanding of drug disposition during pregnancy, since epidemiological and clinical studies have demonstrated that the use of medications by pregnant women is significant and this condition embodies a series of significant anatomical and physiological modifications, particularly at excretory organs and barrier sites (e.g., placenta, breast) expressing transporter proteins which influence pharmacokinetics. Currently, most of the research in this field has focused on the expression profiling of transporter proteins in trophoblasts and endothelial cells of the placenta, regulation of drug-resistance mechanisms in disease states and pharmacokinetic studies. However, little attention has been placed on the influence that the cerebrovascular dysfunction present in pregnancy-related disorders, such as preeclampsia, might exert on drug disposition in the mother’s brain. This issue is particularly important since recent findings have demonstrated that preeclamptic women suffer from long-term alterations in the integrity of the blood-brain barrier (BBB). In this review we aim to analyze the available evidence regarding the influence of pregnancy on the expression of transporters and TJ proteins in brain endothelial cells, as well the mechanisms that govern the pathophysiological alterations in the BBB of women who experience preeclampsia. Future research efforts should be focused not only on achieving a better understanding of the influence of preeclampsia-associated endothelial dysfunction on drug disposition, but also in optimizing the pharmacological treatments of women suffering pregnancy-related disorders, its comorbidities and to develop new therapies aiming to restore the integrity of the BBB.https://www.frontiersin.org/article/10.3389/fphys.2018.01502/fullblood-brain barrierABC transportersSLC transporterstight junction proteinsendothelial dysfunctionpreeclampsia |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pablo Torres-Vergara Pablo Torres-Vergara Carlos Escudero Carlos Escudero Carlos Escudero Jeffrey Penny |
spellingShingle |
Pablo Torres-Vergara Pablo Torres-Vergara Carlos Escudero Carlos Escudero Carlos Escudero Jeffrey Penny Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives Frontiers in Physiology blood-brain barrier ABC transporters SLC transporters tight junction proteins endothelial dysfunction preeclampsia |
author_facet |
Pablo Torres-Vergara Pablo Torres-Vergara Carlos Escudero Carlos Escudero Carlos Escudero Jeffrey Penny |
author_sort |
Pablo Torres-Vergara |
title |
Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives |
title_short |
Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives |
title_full |
Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives |
title_fullStr |
Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives |
title_full_unstemmed |
Drug Transport at the Brain and Endothelial Dysfunction in Preeclampsia: Implications and Perspectives |
title_sort |
drug transport at the brain and endothelial dysfunction in preeclampsia: implications and perspectives |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Physiology |
issn |
1664-042X |
publishDate |
2018-11-01 |
description |
Transport of drugs across biological barriers has been a subject of study for decades. The discovery and characterization of proteins that confer the barrier properties of endothelia and epithelia, including tight junction proteins and membrane transporters belonging to the ATP-binding cassette (ABC) and Solute Carrier (SLC) families, represented a significant step forward into understanding the mechanisms that govern drug disposition. Subsequently, numerous studies, including both pre-clinical approaches and clinical investigations, have been carried out to determine the influence of physiological and pathological states on drug disposition. Importantly, there has been increasing interest in gaining a better understanding of drug disposition during pregnancy, since epidemiological and clinical studies have demonstrated that the use of medications by pregnant women is significant and this condition embodies a series of significant anatomical and physiological modifications, particularly at excretory organs and barrier sites (e.g., placenta, breast) expressing transporter proteins which influence pharmacokinetics. Currently, most of the research in this field has focused on the expression profiling of transporter proteins in trophoblasts and endothelial cells of the placenta, regulation of drug-resistance mechanisms in disease states and pharmacokinetic studies. However, little attention has been placed on the influence that the cerebrovascular dysfunction present in pregnancy-related disorders, such as preeclampsia, might exert on drug disposition in the mother’s brain. This issue is particularly important since recent findings have demonstrated that preeclamptic women suffer from long-term alterations in the integrity of the blood-brain barrier (BBB). In this review we aim to analyze the available evidence regarding the influence of pregnancy on the expression of transporters and TJ proteins in brain endothelial cells, as well the mechanisms that govern the pathophysiological alterations in the BBB of women who experience preeclampsia. Future research efforts should be focused not only on achieving a better understanding of the influence of preeclampsia-associated endothelial dysfunction on drug disposition, but also in optimizing the pharmacological treatments of women suffering pregnancy-related disorders, its comorbidities and to develop new therapies aiming to restore the integrity of the BBB. |
topic |
blood-brain barrier ABC transporters SLC transporters tight junction proteins endothelial dysfunction preeclampsia |
url |
https://www.frontiersin.org/article/10.3389/fphys.2018.01502/full |
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