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Characterization of an In Vitro Differentiation Assay for Pancreatic-Like Cell Development from Murine Embryonic Stem Cells: Detailed Gene Expression Analysis

机译:小鼠胚胎干细胞胰腺样细胞发育的体外分化测定的表征:详细的基因表达分析

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摘要

Embryonic stem (ES) cell technology may serve as a platform for the discovery of drugs to treat diseases such as diabetes. However, because of difficulties in establishing reliable ES cell differentiation methods and in creating cost-effective plating conditions for the high-throughput format, screening for molecules that regulate pancreatic beta cells and their immediate progenitors has been limited. A relatively simple and inexpensive differentiation protocol that allows efficient generation of insulin-expressing cells from murine ES cells was previously established in our laboratories. In this report, this system is characterized in greater detail to map developmental cell stages for future screening experiments. Our results show that sequential activation of multiple gene markers for undifferentiated ES cells, epiblast, definitive endoderm, foregut, and pancreatic lineages was found to follow the sequence of events that mimics pancreatic ontogeny. Cells that expressed enhanced green fluorescent protein, driven by pancreatic and duodenal homeobox 1 or insulin 1 promoter, correctly expressed known beta cell lineage markers. Overexpression of Sox17, an endoderm fate-determining transcription factor, at a very early stage of differentiation (days 2–3) enhanced pancreatic gene expression. Overexpression of neurogenin3, an endocrine progenitor cell marker, induced glucagon expression at stages when pancreatic and duodenal homeobox 1 message was present (days 10–16). Forced expression (between days 16 and 25) of MafA, a pancreatic maturation factor, resulted in enhanced expression of insulin genes, glucose transporter 2 and glucokinase, and glucose-responsive insulin secretion. Day 20 cells implanted in vivo resulted in pancreatic-like cells. Together, our differentiation assay recapitulates the proceedings and behaviors of pancreatic development and will be valuable for future screening of beta cell effectors.
机译:胚胎干(ES)细胞技术可以作为发现治疗糖尿病等药物的平台。但是,由于在建立可靠的ES细胞分化方法和创建高通量形式的经济高效的平板条件方面存在困难,筛选调节胰岛β细胞及其直接祖细胞的分子受到限制。以前在我们的实验室中已经建立了一种相对简单且便宜的分化方案,该方案允许从鼠类ES细胞高效生成胰岛素表达细胞。在本报告中,此系统的特征更为详细,可绘制出发育细胞阶段的图谱,以用于将来的筛选实验。我们的结果表明,未分化的ES细胞,上皮细胞,定形内胚层,前肠和胰腺谱系的多个基因标记的顺序激活被发现遵循模仿胰腺发育的事件序列。在胰腺和十二指肠同源盒1或胰岛素1启动子的驱动下,表达增强的绿色荧光蛋白的细胞正确表达了已知的β细胞谱系标记。 Sox17是内胚层决定命运的转录因子,在分化的早期(2-3天)过表达,可以增强胰腺基因的表达。当存在胰腺和十二指肠同源异型盒1信息时(第10-16天),神经内分泌素3的过度表达会诱导胰高血糖素的表达。胰腺成熟因子MafA的强制表达(在第16天和第25天之间)导致胰岛素基因,葡萄糖转运蛋白2和葡萄糖激酶的表达增强,以及葡萄糖反应性胰岛素分泌。体内植入的第20天细胞产生了胰腺样细胞。在一起,我们的分化测定概括了胰腺发育的过程和行为,对于将来筛选β细胞效应子将是有价值的。

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