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Intracellular and extracellular pH dynamics in the human placenta from diabetes mellitus

  • Joaquin Araos
  • , Luis Silva
  • , Rocio Salsoso
  • , Tamara Saez
  • , Eric Barros
  • , Fernando Toledo
  • , Jaime Gutierrez
  • , Fabian Pardo
  • , Andrea Leiva
  • , Carlos Sanhueza
  • , Luis Sobrevia
  • Pontificia Universidad Católica de Chile, School of Medicine, Faculty of Medicine, Division of Obstetrics and Gynaecology, Department of Obstetrics, Cellular and Molecular Physiology Laboratory (CMPL)
  • Universidad de Sevilla, Faculty of Pharmacy, Department of Physiology
  • Universidad del Bío-Bío, Faculty of Sciences, Department of Basic Sciences
  • Universidad San Sebastian, Health Sciences Faculty, Medical Technology School, Cellular Signalling and Differentiation Laboratory (CSDL)

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

The placenta is a vital organ whose function in diseases of pregnancy is altered, resulting in an abnormal supply of nutrients to the foetus. The lack of placental vasculature homeostasis regulation causes endothelial dysfunction and altered vascular reactivity. The proper distribution of acid- (protons (H+)) and base-equivalents through the placenta is essential to achieve physiological homeostasis. Several membrane transport mechanisms that control H+ distribution between the extracellular and intracellular spaces are expressed in the human placenta vascular endothelium and syncytiotrophoblast, including sodium (Na+)/H+ exchangers (NHEs). One member of the NHEs family is NHE isoform 1 (NHE1), whose activity results in an alkaline intracellular pH (high intracellular pH (pHi)) and an acidic extracellular pH (pHo). Increased NHE1 expression, maximal transport activity, and turnover are reported in human syncytiotrophoblasts and lymphocytes from patients with diabetes mellitus type I (DMT1), and a positive correlation between NHEs activity and plasma factors, such as that between thrombin and platelet factor 3, has been reported in diabetes mellitus type II (DMT2). However, gestational diabetes mellitus (GDM) could result in a higher sensitivity of the human placenta to acidic pHo. We summarized the findings on pHi and pHo modulation in the human placenta with an emphasis on pregnancies in which the mother diagnosed with diabetes mellitus. A potential role of NHEs, particularly NHE1, is proposed regarding placental dysfunction in DMT1, DMT2, and GDM.
Original languageEnglish
Pages (from-to)47-53
Number of pages7
JournalPlacenta
Volume43
DOIs
Publication statusPublished - 13 May 2016
Externally publishedYes

Keywords

  • Human placenta
  • NHE
  • Diabetes mellitus
  • Gestational diabetes
  • UMBILICAL-CORD PH
  • VASCULAR ENDOTHELIAL-CELLS
  • BRUSH-BORDER MEMBRANE
  • HUMAN OVARIAN-CANCER
  • FOLIC-ACID UPTAKE
  • NA+/H+ EXCHANGER
  • CHORIOCARCINOMA CELLS
  • EXPRESSION
  • SYNCYTIOTROPHOBLAST
  • TRANSPORT

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