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首页> 外文期刊>Stem Cells >Mifepristone-inducible caspase-1 expression in mouse embryonic stem cells eliminates tumor formation but spares differentiated cells in vitro and in vivo.
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Mifepristone-inducible caspase-1 expression in mouse embryonic stem cells eliminates tumor formation but spares differentiated cells in vitro and in vivo.

机译:米非司酮诱导的caspase-1在小鼠胚胎干细胞中的表达消除了肿瘤的形成,但在体外和体内都保留了分化的细胞。

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摘要

Embryonic stem cell (ESC)-based therapy is a promising treatment for neurodegenerative diseases. But there is always a risk of tumor formation that is due to contamination of undifferentiated ESCs. To reduce the risk and improve ESC-based therapy, we have established a novel strategy by which we can selectively eliminate tumor cells derived from undifferentiated ESCs but spare differentiated cells. In this study, we generated a caspase-1-ESC line transfected with a mifepristone-regulated caspase-1 expression system. Mifepristone induced caspase-1 overexpression both in differentiated and undifferentiated caspase-1-ESCs. All the undifferentiated caspase-1-ESCs were induced to death after mifepristone treatment. Tumors derived from undifferentiated caspase-1-ESCs were eliminated following 3 weeks of mifepristone treatment in vivo. However, differentiated caspase-1-ESCs survived well under the condition of mifepristone-induced caspase-1 overexpression. To examine in vivo the impact of mifepristone-induced caspase-1 activation on grafted cells, we transplanted wild-type ESCs or caspase-1-ESCs into nude mice brains. After 8 weeks of mifepristone treatment, we could not detect any tumor cells in the caspase-1-ESC grafts in the brains of mice. However, we found that donor dopamine neurons survived in the recipient brains. These data demonstrate that mifepristone-induced caspase-1 overexpression in ESCs can eliminate the potential tumor formation meanwhile spares the differentiated cells in the host brains. These results suggest that this novel ESC-based therapy can be used in Parkinson's disease and other related disorders without the risk of tumor formation.
机译:基于胚胎干细胞(ESC)的疗法是一种用于神经退行性疾病的有前途的疗法。但是由于未分化的ESCs的污染,总是存在肿瘤形成的风险。为了降低风险并改善基于ESC的治疗,我们建立了一种新的策略,通过该策略,我们可以选择性消除源自未分化ESC的肿瘤细胞,但可以保留多余的分化细胞。在这项研究中,我们生成了米非司酮调节的caspase-1表达系统转染的caspase-1-ESC系。米非司酮在分化和未分化的caspase-1-ESCs中均诱导caspase-1过表达。米非司酮治疗后所有未分化的caspase-1-ESCs均被致死。米非司酮在体内治疗3周后,消除了未分化的caspase-1-ESC衍生的肿瘤。然而,在米非司酮诱导的caspase-1过表达的条件下,分化的caspase-1-ESCs存活良好。为了在体内检查米非司酮诱导的caspase-1激活对移植细胞的影响,我们将野生型ESC或caspase-1-ESC移植到裸鼠的大脑中。米非司酮治疗8周后,我们在小鼠脑中未检测到caspase-1-ESC移植物中的任何肿瘤细胞。但是,我们发现供体多巴胺神经元在受体大脑中存活。这些数据表明,米非司酮诱导的ESC中caspase-1的过表达可以消除潜在的肿瘤形成,同时保留宿主脑中分化的细胞。这些结果表明,这种新颖的基于ESC的疗法可用于帕金森氏病和其他相关疾病,而无肿瘤形成的风险。

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