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Ultrastructural comparison of porcine putative embryonic stem cells derived by in vitro fertilization and somatic cell nuclear transfer

Authors
Yoo, HyunjuKim, EunhyeHwang, Seon-UngYoon, Junchul DavidJeon, YubyeolPark, Kyu-MiKim, Kyu-JunJin, MinghuiLee, Chang-KyuLee, EunsongKim, HyunggeeKim, GonhyungHyun, Sang-Hwan
Issue Date
4월-2016
Publisher
SOCIETY REPRODUCTION & DEVELOPMENT-SRD
Keywords
Embryonic stem cell; Porcine; Transmission electron microscopy; Ultrastructure
Citation
JOURNAL OF REPRODUCTION AND DEVELOPMENT, v.62, no.2, pp.177 - 185
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF REPRODUCTION AND DEVELOPMENT
Volume
62
Number
2
Start Page
177
End Page
185
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/89143
DOI
10.1262/jrd.2015-124
ISSN
0916-8818
Abstract
The ultrastructure of porcine putative embryonic stem cells and porcine fetal fibroblasts (PFFs) was analyzed by transmission electron microscopy. The aim of this study was to compare the features of organelles in in vitro fertilization (IVF) derived porcine embryonic stem cells (IVF-pESCs) and somatic cell nuclear transfer (SCNT) derived pESCs (SCNT-pESCs). Also, the features of organelles in high-passage IVF-pESCs were compared with those in low-passage cells. The ultrastructure of PFFs showed rare microvilli on the cell surfaces, polygonal or irregular nuclei with one to two reticular-shaped nucleoli and euchromatin, low cytoplasm-to-nucleus ratios, rare ribosomes, rare rough endoplasmic reticulum, elongated mitochondria, rich lysosomes and rich phagocytic vacuoles. IVF-pESCs showed rare microvilli on the cell surfaces, round or irregular nuclei with one to two reticular-shaped nucleoli and euchromatin, low cytoplasm-to-nucleus ratios, rich ribosomes, long stacks of rough endoplasmic reticulum, elongated mitochondria, rare lysosomes and rare autophagic vacuoles. By contrast, SCNT-pESCs showed rich microvilli with various lengths and frequencies on the cell surfaces, polygonal nuclei with one reticular shaped nucleoli and heterochromatin, high cytoplasm-to-nucleus ratios, rare ribosomes, rare rough endoplasmic reticulum, round mitochondria, rich lysosomes and rich phagocytic vacuoles with clear intercellular junctions. Furthermore, high-passage IVF-pESCs showed irregularly shaped colonies, pyknosis and numerous lysosomes associated with autophagic vacuoles showing signs of apoptosis. In conclusion, this study confirms that the ultrastructural characteristics of pESCs differ depending on their origin. These ultrastructural characteristics might be useful in biomedical research using pESCs, leading to new insights regarding regenerative medicine and tissue repair.
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