Yoo Hyunju, Kim Eunhye, Hwang Seon-Ung, Yoon Junchul David, Jeon Yubyeol, Park Kyu-Mi, Kim Kyu-Jun, Jin Minghui, Lee Chang-Kyu, Lee Eunsong, Kim Hyunggee, Kim Gonhyung, Hyun Sang-Hwan
Laboratory of Veterinary Embryology and Biotechnology (VETEMBIO), College of Veterinary Medicine, Chungbuk National University, Cheongju 28644, Republic of Korea.
J Reprod Dev. 2016 Apr 22;62(2):177-85. doi: 10.1262/jrd.2015-124. Epub 2016 Jan 28.
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.
通过透射电子显微镜分析了猪假定胚胎干细胞和猪胎儿成纤维细胞(PFFs)的超微结构。本研究的目的是比较体外受精(IVF)来源的猪胚胎干细胞(IVF-pESCs)和体细胞核移植(SCNT)来源的pESCs(SCNT-pESCs)中细胞器的特征。此外,还比较了高传代IVF-pESCs和低传代细胞中细胞器的特征。PFFs的超微结构显示细胞表面微绒毛稀少,细胞核呈多边形或不规则形,有1至2个网状核仁且常染色质丰富,细胞质与细胞核比例低,核糖体稀少,粗面内质网稀少,线粒体细长,溶酶体丰富且吞噬泡丰富。IVF-pESCs细胞表面微绒毛稀少,细胞核呈圆形或不规则形,有1至2个网状核仁且常染色质丰富,细胞质与细胞核比例低,核糖体丰富,粗面内质网长堆叠,线粒体细长,溶酶体稀少且自噬泡稀少。相比之下,SCNT-pESCs细胞表面有丰富的、长度和频率各异的微绒毛,细胞核呈多边形,有1个网状核仁且异染色质丰富,细胞质与细胞核比例高,核糖体稀少,粗面内质网稀少,线粒体圆形,溶酶体丰富且吞噬泡丰富,细胞间连接清晰。此外,高传代IVF-pESCs显示出菌落形状不规则、核固缩以及大量与自噬泡相关的溶酶体,呈现出凋亡迹象。总之,本研究证实pESCs的超微结构特征因其来源不同而有所差异。这些超微结构特征可能在使用pESCs的生物医学研究中有用,从而为再生医学和组织修复带来新的见解。