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PMID: 24244532 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Hypoxia-induced changes in the bioactivity of cytotrophoblast-derived exosomes.

PloS one ·Vol. 8 ·No. 11 ·2013-00-00 ·Pages e79636

Salomon C, Kobayashi M, Ashman K, Sobrevia L, Mitchell MD, Rice GE

Abstract

Migration of extravillous trophoblasts (EVT) into decidua and myometrium is a critical process in the conversion of maternal spiral arterioles and establishing placenta perfusion. EVT migration is affected by cell-to-cell communication and oxygen tension. While the release of exosomes from placental cells has been identified as a significant pathway in materno-fetal communication, the role of placental-derived exosomes in placentation has yet to be established. The aim of this study was to establish the effect of oxygen tension on the release and bioactivity of cytotrophoblast (CT)-derived exosomes on EVT invasion and proliferation. CT were isolated from first trimester fetal tissue (n = 12) using a trypsin-deoxyribonuclease-dispase/Percoll method. CT were cultured under 8%, 3% or 1% O2 for 48 h. Exosomes from CT-conditioned media were isolated by differential and buoyant density centrifugation. The effect of oxygen tension on exosome release (µg exosomal protein/10(6)cells/48 h) and bioactivity were established. HTR-8/SVneo (EVT) were used as target cells to establish the effect (bioactivity) of exosomes on invasion and proliferation as assessed by real-time, live-cell imaging (Incucyte™). The release and bioactivity of CT-derived exosomes were inversely correlated with oxygen tension (p<0.001). Under low oxygen tensions (i.e. 1% O2), CT-derived exosomes promoted EVT invasion and proliferation. Proteomic analysis of exosomes identified oxygen-dependent changes in protein content. We propose that in response to changes in oxygen tension, CTs modify the bioactivity of exosomes, thereby, regulating EVT phenotype. Exosomal induction of EVT migration may represent a normal process of placentation and/or an adaptive response to placental hypoxia.

MeSH Terms
Cell Movement Cell Proliferation Exosomes/metabolism Female Humans Hypoxia/metabolism Oxygen/metabolism Pregnancy Protein Interaction Maps Proteome Proteomics Signal Transduction Trophoblasts/metabolism
Chemicals
Proteome Oxygen
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Salomon Carlos
Centre for Clinical Diagnostics, University of Queensland Centre for Clinical Research, Brisbane, Australia.
Kobayashi Miharu
Ashman Keith
Sobrevia Luis
Mitchell Murray D
Rice Gregory E
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Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2013-00-00
Epub
2013-00-11
Pages
e79636
Language
English
Region
United States
NLM ID
101285081
PMCID
PMC3823597
Subset
IM
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