Characterisation of bovine epiblast-derived outgrowth colonies

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Standard

Characterisation of bovine epiblast-derived outgrowth colonies. / Østrup, Esben; Gjørret, Jakob; Schauser, Kirsten Hallundbæk; Schmidt, Mette; Hall, Vanessa Jane; Hyttel, Poul.

I: Reproduction, Fertility and Development, Bind 22, Nr. 4, 2010, s. 625-633.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Østrup, E, Gjørret, J, Schauser, KH, Schmidt, M, Hall, VJ & Hyttel, P 2010, 'Characterisation of bovine epiblast-derived outgrowth colonies', Reproduction, Fertility and Development, bind 22, nr. 4, s. 625-633. https://doi.org/10.1071/RD08300

APA

Østrup, E., Gjørret, J., Schauser, K. H., Schmidt, M., Hall, V. J., & Hyttel, P. (2010). Characterisation of bovine epiblast-derived outgrowth colonies. Reproduction, Fertility and Development, 22(4), 625-633. https://doi.org/10.1071/RD08300

Vancouver

Østrup E, Gjørret J, Schauser KH, Schmidt M, Hall VJ, Hyttel P. Characterisation of bovine epiblast-derived outgrowth colonies. Reproduction, Fertility and Development. 2010;22(4):625-633. https://doi.org/10.1071/RD08300

Author

Østrup, Esben ; Gjørret, Jakob ; Schauser, Kirsten Hallundbæk ; Schmidt, Mette ; Hall, Vanessa Jane ; Hyttel, Poul. / Characterisation of bovine epiblast-derived outgrowth colonies. I: Reproduction, Fertility and Development. 2010 ; Bind 22, Nr. 4. s. 625-633.

Bibtex

@article{cbbac440430011df928f000ea68e967b,
title = "Characterisation of bovine epiblast-derived outgrowth colonies",
abstract = "The aim of the present study was to characterise bovine epiblast-derived outgrowth colonies (OCs) with respect to the embryonic origin of their cellular components. Epiblasts were isolated mechanically from bovine Day 12 embryos. Epiblasts were cultured on feeder layers of SNL cells (neomycin-resistant leukaemia inhibitory factor (LIF)-producing STO cells) in Dulbecco's modified Eagle's medium (DMEM)/F12 medium supplemented with 15% fetal calf serum, 5% KnockOut Serum Replacement, LIF, basic fibroblast growth factor, non-essential amino acids (NEAA) and nucleosides. Samples were fixed on Days 4, 6 and 8 of culture and processed for immunocytochemistry and transmission electron microscopy. Epiblasts formed OCs consisting of a central core of epiblast-like cells with a basal plate of flattened cells extending outwards from the core. The cells of the core showed nuclear octamer-binding transcription factor 4 (OCT4) staining, indicating an epiblast origin, and some also stained positive for cytoplasmic vimentin. Adjacent cells were linked by tight junctions towards the surface of the colony and rested on a basal lamina. The cells of the basal plate predominantly stained for alpha1-fetoprotein (AFP), indicative of a possible hypoblast origin. Only a few cells scattered within the basal plate exhibited cytokeratin 8 staining, indicating a trophectoderm nature. The intensity of OCT4 and vimentin staining within the core had decreased by Day 8 of culture. In conclusion, OCs derived from bovine Day 12 epiblasts display a central core of OCT4-stained cells of a potential epiblast origin surrounded by a basal plate of mainly AFP-stained cells of a potential hypoblast nature",
author = "Esben {\O}strup and Jakob Gj{\o}rret and Schauser, {Kirsten Hallundb{\ae}k} and Mette Schmidt and Hall, {Vanessa Jane} and Poul Hyttel",
year = "2010",
doi = "10.1071/RD08300",
language = "English",
volume = "22",
pages = "625--633",
journal = "Australian journal of scientific research. Ser. B: Biological sciences",
issn = "1031-3613",
publisher = "C S I R O Publishing",
number = "4",

}

RIS

TY - JOUR

T1 - Characterisation of bovine epiblast-derived outgrowth colonies

AU - Østrup, Esben

AU - Gjørret, Jakob

AU - Schauser, Kirsten Hallundbæk

AU - Schmidt, Mette

AU - Hall, Vanessa Jane

AU - Hyttel, Poul

PY - 2010

Y1 - 2010

N2 - The aim of the present study was to characterise bovine epiblast-derived outgrowth colonies (OCs) with respect to the embryonic origin of their cellular components. Epiblasts were isolated mechanically from bovine Day 12 embryos. Epiblasts were cultured on feeder layers of SNL cells (neomycin-resistant leukaemia inhibitory factor (LIF)-producing STO cells) in Dulbecco's modified Eagle's medium (DMEM)/F12 medium supplemented with 15% fetal calf serum, 5% KnockOut Serum Replacement, LIF, basic fibroblast growth factor, non-essential amino acids (NEAA) and nucleosides. Samples were fixed on Days 4, 6 and 8 of culture and processed for immunocytochemistry and transmission electron microscopy. Epiblasts formed OCs consisting of a central core of epiblast-like cells with a basal plate of flattened cells extending outwards from the core. The cells of the core showed nuclear octamer-binding transcription factor 4 (OCT4) staining, indicating an epiblast origin, and some also stained positive for cytoplasmic vimentin. Adjacent cells were linked by tight junctions towards the surface of the colony and rested on a basal lamina. The cells of the basal plate predominantly stained for alpha1-fetoprotein (AFP), indicative of a possible hypoblast origin. Only a few cells scattered within the basal plate exhibited cytokeratin 8 staining, indicating a trophectoderm nature. The intensity of OCT4 and vimentin staining within the core had decreased by Day 8 of culture. In conclusion, OCs derived from bovine Day 12 epiblasts display a central core of OCT4-stained cells of a potential epiblast origin surrounded by a basal plate of mainly AFP-stained cells of a potential hypoblast nature

AB - The aim of the present study was to characterise bovine epiblast-derived outgrowth colonies (OCs) with respect to the embryonic origin of their cellular components. Epiblasts were isolated mechanically from bovine Day 12 embryos. Epiblasts were cultured on feeder layers of SNL cells (neomycin-resistant leukaemia inhibitory factor (LIF)-producing STO cells) in Dulbecco's modified Eagle's medium (DMEM)/F12 medium supplemented with 15% fetal calf serum, 5% KnockOut Serum Replacement, LIF, basic fibroblast growth factor, non-essential amino acids (NEAA) and nucleosides. Samples were fixed on Days 4, 6 and 8 of culture and processed for immunocytochemistry and transmission electron microscopy. Epiblasts formed OCs consisting of a central core of epiblast-like cells with a basal plate of flattened cells extending outwards from the core. The cells of the core showed nuclear octamer-binding transcription factor 4 (OCT4) staining, indicating an epiblast origin, and some also stained positive for cytoplasmic vimentin. Adjacent cells were linked by tight junctions towards the surface of the colony and rested on a basal lamina. The cells of the basal plate predominantly stained for alpha1-fetoprotein (AFP), indicative of a possible hypoblast origin. Only a few cells scattered within the basal plate exhibited cytokeratin 8 staining, indicating a trophectoderm nature. The intensity of OCT4 and vimentin staining within the core had decreased by Day 8 of culture. In conclusion, OCs derived from bovine Day 12 epiblasts display a central core of OCT4-stained cells of a potential epiblast origin surrounded by a basal plate of mainly AFP-stained cells of a potential hypoblast nature

U2 - 10.1071/RD08300

DO - 10.1071/RD08300

M3 - Journal article

C2 - 20353722

VL - 22

SP - 625

EP - 633

JO - Australian journal of scientific research. Ser. B: Biological sciences

JF - Australian journal of scientific research. Ser. B: Biological sciences

SN - 1031-3613

IS - 4

ER -

ID: 19095219