Oviduct Fluid Extracellular Vesicles Change the Phospholipid Composition of Bovine Embryos Developed In Vitro.

bovine cattle embryo exosomes extracellular vesicles fallopian tube lipidomics microvesicles oviduct tubal fluid

Journal

International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791

Informations de publication

Date de publication:
27 Jul 2020
Historique:
received: 23 06 2020
revised: 20 07 2020
accepted: 25 07 2020
entrez: 31 7 2020
pubmed: 31 7 2020
medline: 18 2 2021
Statut: epublish

Résumé

Oviduct fluid extracellular vesicles (oEVs) have been proposed as bringing key molecules to the early developing embryo. In order to evaluate the changes induced by oEVs on embryo phospholipids, fresh bovine blastocysts developed in vitro in the presence or absence of oEVs were analyzed by intact cell MALDI-TOF (Matrix assisted laser desorption ionization-Time of flight) mass spectrometry (ICM-MS). The development rates, cryotolerance, and total cell number of blastocysts were also evaluated. The exposure to oEVs did not affect blastocyst yield or cryotolerance but modified the phospholipid content of blastocysts with specific changes before and after blastocoel expansion. The annotation of differential peaks due to oEV exposure evidenced a shift of embryo phospholipids toward more abundant phosphatidylcholines (PC), phosphatidylethanolamines (PE), and sphingomyelins (SM) with long-chain fatty acids. The lipidomic profiling of oEVs showed that 100% and 33% of the overabundant masses in blastocysts and expanded blastocysts, respectively, were also present in oEVs. In conclusion, this study provides the first analysis of the embryo lipidome regulated by oEVs. Exposure to oEVs induced significant changes in the phospholipid composition of resulting embryos, probably mediated by the incorporation of oEV-phospholipids into embryo membranes and by the modulation of the embryonic lipid metabolism by oEV molecular cargos.

Identifiants

pubmed: 32727074
pii: ijms21155326
doi: 10.3390/ijms21155326
pmc: PMC7432015
pii:
doi:

Substances chimiques

Phospholipids 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Subventions

Organisme : APIS-GENE
ID : Embryomimétisme
Organisme : ANRT
ID : 2017/0684
Organisme : CPER
ID : Biomédicaments
Organisme : Union Evolution
ID : no grant number

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Auteurs

Charles Banliat (C)

INRAE, CNRS, University of Tours, IFCE, UMR 85 PRC, F-37380 Nouzilly, France.
Union Evolution, F-35530 Noyal-Sur-Vilaine, France.

Daniel Le Bourhis (D)

Allice, F-37380 Nouzilly, France.

Ophélie Bernardi (O)

INRAE, CNRS, University of Tours, IFCE, UMR 85 PRC, F-37380 Nouzilly, France.

Daniel Tomas (D)

INRAE, CNRS, University of Tours, IFCE, UMR 85 PRC, F-37380 Nouzilly, France.
INRAE, Université de Tours, CHU de Tours, Plate-forme CIRE, F-37380 Nouzilly, France.

Valérie Labas (V)

INRAE, CNRS, University of Tours, IFCE, UMR 85 PRC, F-37380 Nouzilly, France.
INRAE, Université de Tours, CHU de Tours, Plate-forme CIRE, F-37380 Nouzilly, France.

Pascal Salvetti (P)

Allice, F-37380 Nouzilly, France.

Benoît Guyonnet (B)

Union Evolution, F-35530 Noyal-Sur-Vilaine, France.

Pascal Mermillod (P)

INRAE, CNRS, University of Tours, IFCE, UMR 85 PRC, F-37380 Nouzilly, France.

Marie Saint-Dizier (M)

INRAE, CNRS, University of Tours, IFCE, UMR 85 PRC, F-37380 Nouzilly, France.
Department Agrosciences, Faculty of Sciences and Techniques, University of Tours, F-37200 Tours, France.

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