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Altered Expression of G1/S Phase Cell Cycle Regulators in Placental Mesenchymal Stromal Cells Derived from Preeclamptic Pregnancies with Fetal-Placental Compromise

Authors :
Nuzzo, Anna Maria
Giuffrida, Domenica
Masturzo, Bianca
Mele, Paolo
Piccoli, Ettore
Eva, Carola
Todros, Tullia
Rolfo, Alessandro
Publication Year :
2016
Publisher :
Taylor & Francis, 2016.

Abstract

Herein, we evaluated whether Placental Mesenchymal Stromal Cells (PDMSCs) derived from normal and Preeclamptic (PE) placentae presented differences in the expression of G1/S-phase regulators p16INK4A, p18INK4C, CDK4 and CDK6. Finally, we investigated normal and PE-PDMSCs paracrine effects on JunB, Cyclin D1, p16INK4A, p18INK4C, CDK4 and CDK6 expressions in physiological term villous explants. PDMSCs were isolated from physiological (n = 20) and PE (n = 24) placentae. Passage three normal and PE-PDMSC and conditioned media (CM) were collected after 48 h. Physiological villous explants (n = 60) were treated for 72 h with normal or PE-PDMSCs CM. Explants viability was assessed by Lactate Dehydrogenase Cytotoxicity assay. Cyclin D1 localization was evaluated by Immuofluorescence (IF) while JunB, Cyclin-D1 p16INK4A, p18INK4C, CDK4 and CDK6 levels were assessed by Real Time PCR and Western Blot assay. We reported significantly increased p16INK4A and p18INK4C expression in PE- relative to normal PDMSCs while no differences in CDK4 and CDK6 levels were detected. Explants viability was not affected by normal or PE-PDMSCs CM. Normal PDMSCs CM increased JunB, p16INK4 and p18INK4C and decreased Cyclin-D1 in placental tissues. In contrast, PE-PDMSCs CM induced JunB down-regulation and Cyclin D1 increase in placental explants. Cyclin D1 IF staining showed that CM treatment targeted mainly the syncytiotrophoblast. We showed Cyclin D1-p16INK4A/p18INK4C altered pathway in PE-PDMSCs demonstrating an aberrant G1/S phase transition in these pathological cells. The abnormal Cyclin D1-p16INK4A/p18INK4C expression in explants conditioned by PE-PDMSCs media suggest a key contribution of mesenchymal cells to the altered trophoblast cell cycle regulation typical of PE pregnancies with fetal-placental compromise.

Subjects

Subjects :
endocrine system

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....57f723092c405030a460df4d14e67a5d
Full Text :
https://doi.org/10.6084/m9.figshare.4311677.v1