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Biol Reprod ; 91(6): 134, 2014 Dec.
Article in English | MEDLINE | ID: mdl-25232021

ABSTRACT

Decidual natural killer (dNK) cells have been shown to both promote and inhibit trophoblast behavior important for decidual remodeling in pregnancy and have a distinct phenotype compared to peripheral blood NK cells. We investigated whether different levels of oxygen tension, mimicking the physiological conditions of the decidua in early pregnancy, altered cell surface receptor expression and activity of dNK cells and their interactions with trophoblast. dNK cells were isolated from terminated first-trimester pregnancies and cultured in oxygen tensions of 3%, 10%, and 21% for 24 h. Cell surface receptor expression was examined by flow cytometry, and the effects of secreted factors in conditioned medium (CM) on the trophoblast cell line SGHPL-4 were assessed in vitro. SGHPL-4 cells treated with dNK cell CM incubated in oxygen tensions of 10% were significantly more invasive (P < 0.05) and formed endothelial-like networks to a greater extent (P < 0.05) than SGHPL-4 cells treated with dNK cell CM incubated in oxygen tensions of 3% or 21%. After 24 h, a lower percentage of dNK cells expressed CD56 at 21% oxygen (P < 0.05), and an increased percentage of dNK cells expressed NKG2D at 10% oxygen (P < 0.05) compared to other oxygen tensions, with large patient variation. This study demonstrates dNK cell phenotype and secreted factors are modulated by oxygen tension, which induces changes in trophoblast invasion and endovascular-like differentiation. Alterations in dNK cell surface receptor expression and secreted factors at different oxygen tensions may represent regulation of function within the decidua during the first trimester of pregnancy.


Subject(s)
Cell Communication/drug effects , Decidua/immunology , Killer Cells, Natural/drug effects , Oxygen/pharmacology , Receptors, Cell Surface/metabolism , Trophoblasts/drug effects , Cell Adhesion/drug effects , Cell Communication/immunology , Cell Movement/drug effects , Cells, Cultured , Decidua/cytology , Decidua/metabolism , Dose-Response Relationship, Drug , Female , Humans , Killer Cells, Natural/metabolism , Killer Cells, Natural/physiology , Pregnancy , Trophoblasts/physiology
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