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Enhanced expression of myogenic differentiation factors and skeletal muscle proteins in human amnion-derived cells via the forced expression of MYOD1

机译:通过强迫表达MYOD1增强羊膜来源细胞中肌源性分化因子和骨骼肌蛋白的表达

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Objectives: Mesenchymal stem cells are expected to be an ideal cell source for cellular and gene therapy. We previously showed that cells derived from the human placenta can be induced to differentiate into myotubes in vitro and to express dystrophin in mdx/scid mice in vivo. In this study, we examined whether amnion-derived cells can be efficiently transduced and differentiated using lentiviral vectors carrying human MYOD1. Methods: The amnion-derived cells were isolated from human preterm placentas. They were transduced with the MYOD1 vector, and mRNA levels for MYOD1, MYF5, MYOG, MYH2 and DMD were determined by quantitative-reverse transcriptase-polymerase chain reaction, and also examined immunocytochemically. Results: Approximately 70% of amnion-derived cells were efficiently transduced by the lentiviral vectors. MYOD1 activates MYF5 and MYOG, MYH2 and DMD after a 7-day culture. The concerted upregulations of these myogenic regulatory factors enhanced MYH2 and DMD expressions. PAX7 was below the detectable level. Both myosin heavy chain and dystrophin were demonstrated by immunocytochemistry. Conclusions: MYOD1 activates MYF5 and MYOG, the transcription factor genes essential for myogenic differentiation, and the concerted upregulation of these myogenic regulatory factors enhanced MYH2 and DMD expressions. The amniotic membrane is an immune-privileged tissue, making MYOD1-transduced amnion-derived cells an ideal cell source for cellular and gene therapy for muscle disorders. This is the first report showing that amnion-derived cells can be modified by exogenous genes using lentiviral vectors. Furthermore, MYOD1-transduced amnion-derived cells are capable of the dystrophin expression necessary for myogenic differentiation. ? 2012 The Japanese Society of Child Neurology.
机译:目的:间充质干细胞有望成为细胞和基因治疗的理想细胞来源。我们以前表明,可以诱导人胎盘细胞在体外分化为肌管,并在mdx / scid小鼠体内表达肌营养不良蛋白。在这项研究中,我们检查了使用携带人MYOD1的慢病毒载体是否可以有效地转导和分化羊膜来源的细胞。方法:从人早产胎盘中分离羊膜来源的细胞。用MYOD1载体转导它们,并通过定量逆转录酶-聚合酶链反应测定MYOD1,MYF5,MYOG,MYH2和DMD的mRNA水平,并进行免疫细胞化学检查。结果:约70%的羊膜来源细胞被慢病毒载体有效转导。培养7天后,MYOD1激活MYF5和MYOG,MYH2和DMD。这些肌源性调节因子的协同上调增强了MYH2和DMD的表达。 PAX7低于可检测水平。免疫细胞化学证实了肌球蛋白重链和肌营养不良蛋白。结论:MYOD1激活MYF5和MYOG,这是肌原性分化必不可少的转录因子基因,这些肌原性调节因子的协同上调增强了MYH2和DMD的表达。羊膜是一种免疫特权的组织,使MYOD1转导的羊膜来源的细胞成为用于肌肉疾病的细胞和基因治疗的理想细胞来源。这是第一个报道,表明可以使用慢病毒载体通过外源基因修饰羊膜来源的细胞。此外,MYOD1转导的羊膜来源的细胞能够表达肌原性分化所需的肌营养不良蛋白。 ? 2012年日本儿童神经病学会。

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