定量测定胚胎干细胞肝脏基因活性的分子工程方法

E. J. Wallenstein, R. Schloss, M. Yarmush
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引用次数: 0

摘要

虽然存在从小鼠胚胎干细胞(ES)中产生肝细胞样细胞的明确分化策略,但这些系统产生异质的最终群体,难以测定,纯化和量化感兴趣的细胞并了解其基因表达谱。利用非病毒载体质粒,我们设计了几个构建体来探索α胎蛋白和白蛋白的实时表达水平。这些载体编码增强的绿色荧光蛋白(EGFP),并由感兴趣的基因的调控元件驱动,通过瞬时转染,DNA报告质粒被递送到胚胎干细胞中,以监测基因行为和肝样细胞的部分。使用本构报告者的平行转染提供了标准化控制,并产生了对不同分化的基因摄取变化的见解。基因行为是根据流量来量化的,感兴趣的细胞可以通过细胞分选器从剩余的群体中进一步纯化。这个过程使额外的酶分析可以在这个同质组上进行。除了为理解特定的基因调控基序提供一个生动的工具外,报告基因还可以进一步应用于分析细胞-细胞相互作用、细胞通讯和细胞组分的成熟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular engineering approaches for quantifying hepatic gene activity in embryonic stem cells
Although defined differentiation strategies exist for generating hepatocyte-like cells from mouse embryonic stem (ES) cells, these systems yield a heterogeneous end population, from which it is difficult to assay, purify and quantify cells of interest and understand their gene expression profile. Using non-viral vector plasmids, we have designed several constructs for exploring the real-time expression levels of alpha feto-protein and albumin. These vectors encode for enhanced green fluorescent protein (EGFP) and are driven by the regulatory elements of the gene of interest Via transient transfection, the DNA reporter plasmids are delivered into the ES cells to monitor gene behavior and the portion of cells that are liver-like. Parallel transfections using constitutive reporters provide a normalization control and yield insight into changes in gene uptake with varied differentiation. Gene behavior is quantified based on flow cy to me try and cells of interest can be further purified from the remaining population via a cell sorter. This process enables additional enzymatic assays to be performed on this homogenous group. In addition to providing a vivid tool for understanding specific gene regulatory motifs, the reporters have further application in assaying cell-cell interactions, cell communication and maturation of cellular components.
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