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Materno-fetal cholesterol transport during pregnancy
Sampada Kallol1,2, Christiane Albrecht1,2
1Institute of Biochemistry and Molecular Medicine, University of Bern, Bern, Switzerland.
Insights
Maternal cholesterol transport to the fetus is crucial for fetal development. Proteins like SR-B1 and ABC transporters regulate cholesterol movement across the placenta, with altered expression in pregnancy pathologies.
Area of Science:
- Reproductive biology and developmental physiology
- Molecular and cellular biology
- Biochemistry and metabolism
Background:
- Cholesterol is vital for fetal growth, steroid hormone synthesis, and organ development.
- The placenta regulates maternal-fetal cholesterol transfer via specific transport mechanisms.
- Understanding placental cholesterol transport is key to addressing fetal growth complications.
Purpose of the Study:
- To review cholesterol transport mechanisms across the human placenta.
- To detail the expression and localization of key cholesterol transport proteins.
- To examine alterations in these proteins in pregnancy pathologies.
Main Methods:
- Literature review of placental cholesterol transport.
- Analysis of protein expression and localization studies.
- Summary of findings related to pre-eclampsia, GDM, and IUGR.
Main Results:
- Cholesterol uptake involves HDL-, LDL-, VLDL-cholesterol via SR-B1, cubulin, megalin, LDLR, and NPC1.
- Cholesterol efflux is mediated by ABC-transporter A1 and ABCG1 interacting with apolipoproteins.
- Expression patterns of these proteins are altered in conditions like pre-eclampsia, GDM, and IUGR.
Conclusions:
- The placenta employs complex protein machinery for maternal-fetal cholesterol exchange.
- Dysregulation of cholesterol transport proteins contributes to adverse pregnancy outcomes.
- Further research into these pathways may offer therapeutic targets for pregnancy complications.
Abstract:
Cholesterol is a major nutrient required for fetal growth. It is also a precursor for the synthesis of steroid hormones and essential for the development and maturation of fetal organs. During pregnancy, the placenta controls the transport of cholesterol from the mother to the fetus and vice versa. Cholesterol originating from the maternal circulation has to cross two main membrane barriers to reach the fetal circulation: Firstly, cholesterol is acquired by the apical side of the syncytiotrophoblast (STB) from the maternal circulation as high-density lipoprotein (HDL)-, low-density lipoprotein (LDL)- or very-low-density lipoprotein (VLDL)-cholesterol and secreted at the basal side facing the villous stroma. Secondly, from the villous stroma cholesterol is taken up by the endothelium of the fetal vasculature and transported to the fetal vessels. The proteins involved in the uptake of HDL-, LDL-, VLDL- or unesterified-cholesterol are scavenger receptor type B class 1 (SR-B1), cubulin, megalin, LDL receptor (LDLR) or Niemann-Pick-C1 (NPC1) which are localized at the apical and/or basal side of the STB or at the fetal endothelium. Through interaction with apolipoproteins (e.g. apoA1) cholesterol is effluxed either to the maternal or fetal circulation via the ATP-binding-cassette (ABC)-transporter A1 and ABCG1 localized at the apical/basal side of the STB or the endothelium. In this mini-review, we summarize the transport mechanisms of cholesterol across the human placenta, the expression and localization of proteins involved in the uptake and efflux of cholesterol, and the expression pattern of cholesterol transport proteins in pregnancy pathologies such as pre-eclampsia, gestational diabetes mellitus and intrauterine growth retardation.
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