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14 February 2020 Characterization and regulation of extracellular vesicles in the lumen of the ovine uterus
Eleanore V. O'Neil, Gregory W. Burns, Christina R. Ferreira, Thomas E. Spencer
Author Affiliations +
Abstract

Secretions of the endometrium are vital for peri-implantation growth and development of the sheep conceptus. Extracellular vesicles (EVs) are present in the uterine lumen, emanate from both the endometrial epithelia of the uterus and trophectoderm of the conceptus, and hypothesized to mediate communication between those cell types during pregnancy establishment in sheep. Size-exclusion chromatography and nanoparticle tracking analysis determined that total EV number in the uterine lumen increased from days 10 to 14 of the cycle but was lower on days 12 and 14 of pregnancy in sheep. Intrauterine infusions of interferon tau (IFNT) did not affect total EV number in the uterine lumen. Quantitative mass spectrometric analyses defined proteins and lipids in EVs isolated from the uterine lumen of day 14 cyclic and pregnant sheep. In vitro analyses found that EVs decreased ovine trophectoderm cell proliferation and increased IFNT production without effects on gene expression as determined by RNA-seq. Collective results support the idea EVs impact conceptus growth during pregnancy establishment via effects on trophectoderm cell growth.

Summary Sentence

EVs in the lumen of the ovine uterus decrease during early pregnancy, contain lipid and protein cargo, and modulate trophectoderm cell growth.

© The Author(s) 2020. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Eleanore V. O'Neil, Gregory W. Burns, Christina R. Ferreira, and Thomas E. Spencer "Characterization and regulation of extracellular vesicles in the lumen of the ovine uterus," Biology of Reproduction 102(5), 1020-1032, (14 February 2020). https://doi.org/10.1093/biolre/ioaa019
Received: 13 November 2019; Accepted: 7 February 2020; Published: 14 February 2020
KEYWORDS
exosome
lipid
microvesicle
pregnancy
Protein
sheep
uterus
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