Porcine Pluripotent Stem Cells Derived from IVF Embryos Contribute to Chimeric Development In Vivo
Pluripotent Stem Cells
0301 basic medicine
Nuclear Transfer Techniques
Swine
Science
Cell Culture Techniques
Mice, Nude
Fertilization in Vitro
Cell Line
Mice
03 medical and health sciences
Pregnancy
Animals
Embryonic Stem Cells
Chimera
Q
R
Teratoma
Cell Differentiation
Fibroblasts
Embryo, Mammalian
Blastocyst
Medicine
Female
Germ Layers
Research Article
DOI:
10.1371/journal.pone.0151737
Publication Date:
2016-03-18T22:59:58Z
AUTHORS (8)
ABSTRACT
Although the pig is considered an important model of human disease and an ideal animal for the preclinical testing of cell transplantation, the utility of this model has been hampered by a lack of genuine porcine embryonic stem cells. Here, we derived a porcine pluripotent stem cell (pPSC) line from day 5.5 blastocysts in a newly developed culture system based on MXV medium and a 5% oxygen atmosphere. The pPSCs had been passaged more than 75 times over two years, and the morphology of the colony was similar to that of human embryonic stem cells. Characterization and assessment showed that the pPSCs were alkaline phosphatase (AKP) positive, possessed normal karyotypes and expressed classic pluripotent markers, including OCT4, SOX2 and NANOG. In vitro differentiation through embryonic body formation and in vivo differentiation via teratoma formation in nude mice demonstrated that the pPSCs could differentiate into cells of the three germ layers. The pPSCs transfected with fuw-DsRed (pPSC-FDs) could be passaged with a stable expression of both DsRed and pluripotent markers. Notably, when pPSC-FDs were used as donor cells for somatic nuclear transfer, 11.52% of the reconstructed embryos developed into blastocysts, which was not significantly different from that of the reconstructed embryos derived from porcine embryonic fibroblasts. When pPSC-FDs were injected into day 4.5 blastocysts, they became involved in the in vitro embryonic development and contributed to the viscera of foetuses at day 50 of pregnancy as well as the developed placenta after the chimeric blastocysts were transferred into recipients. These findings indicated that the pPSCs were porcine pluripotent cells; that this would be a useful cell line for porcine genetic engineering and a valuable cell line for clarifying the molecular mechanism of pluripotency regulation in pigs.
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CITATIONS (44)
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