“Cell cycle process”, “cell division” and “cell proliferation” belong to ontology groups highly regulated during long–term culture of porcine oviductal epithelial cells

Author:

Kulus Magdalena1,Józkowiak Małgorzata2,Kulus Jakub1,Popis Małgorzata3,Borowiec Blanka3,Stefańska Katarzyna4,Celichowski Piotr4,Nawrocki Mariusz J.3,Bukowska Dorota1,Brüssow Klaus P.1,Kempisty Bartosz345,Jeseta Michal5,Antosik Paweł1

Affiliation:

1. Veterinary Centre , Nicolaus Copernicus University in Torun , Torun , Poland

2. Department of Toxicology , Poznan University of Medical Sciences , Poznan , Poland

3. Department of Anatomy , Poznan University of Medical Sciences , Poznan , Poland

4. Department of Histology and Embryology , Poznan University of Medical Sciences , Poznan , Poland

5. Department of Obstetrics and Gynecology , University Hospital and Masaryk University , Brno , Czech Republic

Abstract

Abstract Morphological and biochemical changes in the cells surrounding the oocyte seem to be extremely important in an effective fertilization process. Thanks to advanced cell culture techniques, as well as biochemical and bioinformatics analyses, we can partly imitate the phenomena occurring in the living organism. Previous studies showed a possibility of short – and long – term OEC in vitro cultivation, during which these cells have shown to have significant proliferation and expression of genes responsible for differentiation. Our research was aimed at maintaining a culture of porcine oviduct epithelial cells and analyzing their gene expression profile. The study employed cross-bred gilts at the age of about 9 months, obtained from commercial herds. With the use of Affymetrix® Porcine Gene 1.1 ST Array Strip, we have examined the expression of 12257 transcripts. Genes with fold change higher than abs (2) and with corrected p-value lower than 0.05 were considered as differentially expressed. We chose 20 genes with the most marked expression (10 up – regulated, 10 down – regulated) for further investigation in the context of literature sources. These genes belonged to three ontological groups: “cell cycle process”, “cell division” and “cell proliferation”. The results obtained from these studies may be the basis for further molecular analyses.

Publisher

Walter de Gruyter GmbH

Subject

Cell Biology,Molecular Biology

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