Sun Xiaofang, Long Xiaolin, Yin Yifei, Jiang Yonghua, Chen Xinjie, Liu Weiqiang, Zhang Wenhong, Du Hongzi, Li Shaoying, Zheng Yuhong, Kong Shu, Pang Qianying, Shi Yu, Huang Yulin, Huang Shengchan, Liao Baoping, Xiao Guohong, Wang Weihua
Institute of Gynecology and Obstetrics, The Third Affiliated Hospital of Guangzhou Medical College, Guangzhou, People's Republic of China.
Hum Reprod. 2008 Oct;23(10):2185-93. doi: 10.1093/humrep/den137. Epub 2008 Jul 8.
Human embryonic stem cell (hESC) lines derived from poor quality embryos usually have either normal or abnormal karyotypes. However, it is still unclear whether their biological characteristics are similar.
Seven new hESC lines were established using discarded embryos. Five cell lines had normal karyotype, one was with an unbalanced Robertsonian translocation and one had a triploid karyotype. Their biological characteristics, short tandem repeat loci, HLA typing, differentiation capability and imprinted gene, DNA methylation and X chromosome inactivation status were compared between different cell lines.
All seven hESC lines had similar biological characteristics regardless of karyotype (five normal and two abnormal), such as expression of stage-specific embryonic antigen (SSEA)-4, tumor-rejection antigen (TRA)-1-81 and TRA-1-60 proteins, transcription factor octamer binding protein 4 mRNA, no detectable expression of SSEA-1 protein and high levels of alkaline phosphatase activity. All cell lines were able to undergo differentiation. Imprinted gene expression and DNA methylation were also similar among these cell lines. Non-random X chromosome inactivation patterns were found in XX cell lines.
The present results suggest that hESC lines with abnormal karyotype are also useful experimental materials for cell therapy, developmental biology and genetic research.
源自质量较差胚胎的人类胚胎干细胞(hESC)系通常具有正常或异常的核型。然而,它们的生物学特性是否相似仍不清楚。
使用废弃胚胎建立了7个新的hESC系。5个细胞系核型正常,1个具有不平衡的罗伯逊易位,1个具有三倍体核型。比较了不同细胞系之间的生物学特性、短串联重复序列位点、HLA分型、分化能力以及印记基因、DNA甲基化和X染色体失活状态。
所有7个hESC系,无论核型如何(5个正常和2个异常),都具有相似的生物学特性,如阶段特异性胚胎抗原(SSEA)-4、肿瘤排斥抗原(TRA)-1-81和TRA-1-60蛋白的表达、转录因子八聚体结合蛋白4 mRNA、未检测到SSEA-1蛋白的表达以及高水平的碱性磷酸酶活性。所有细胞系都能够进行分化。这些细胞系之间的印记基因表达和DNA甲基化也相似。在XX细胞系中发现了非随机的X染色体失活模式。
目前的结果表明,核型异常的hESC系也是细胞治疗、发育生物学和遗传学研究的有用实验材料。