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FGF4 and retinoic acid direct differentiation of hESCs into PDX1-expressing foregut endoderm in a time- and concentration-dependent manner.

机译:FGF4和视黄酸以时间和浓度依赖性方式将hEsC直接分化为表达pDX1的前肠内胚层。

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摘要

BACKGROUND: Retinoic acid (RA) and fibroblast growth factor 4 (FGF4) signaling control endoderm patterning and pancreas induction/expansion. Based on these findings, RA and FGFs, excluding FGF4, have frequently been used in differentiation protocols to direct differentiation of hESCs into endodermal and pancreatic cell types. In vivo, these signaling pathways act in a temporal and concentration-dependent manner. However, in vitro, the underlying basis for the time of addition of growth and differentiation factors (GDFs), including RA and FGFs, as well as the concentration is lacking. Thus, in order to develop robust and reliable differentiation protocols of ESCs into mature pancreatic cell types, including insulin-producing beta cells, it will be important to mechanistically understand each specification step. This includes differentiation of mesendoderm/definitive endoderm into foregut endoderm--the origin of pancreatic endoderm. METHODOLOGY/PRINCIPAL FINDINGS: Here, we provide data on the individual and combinatorial role of RA and FGF4 in directing differentiation of ActivinA (AA)-induced hESCs into PDX1-expressing cells. FGF4's ability to affect endoderm patterning and specification in vitro has so far not been tested. By testing out the optimal concentration and timing of addition of FGF4 and RA, we present a robust differentiation protocol that on average generates 32% PDX1(+) cells. Furthermore, we show that RA is required for converting AA-induced hESCs into PDX1(+) cells, and that part of the underlying mechanism involves FGF receptor signaling. Finally, further characterization of the PDX1(+) cells suggests that they represent foregut endoderm not yet committed to pancreatic, posterior stomach, or duodenal endoderm. CONCLUSION/SIGNIFICANCE: In conclusion, we show that RA and FGF4 jointly direct differentiation of PDX1(+) foregut endoderm in a robust and efficient manner. RA signaling mediated by the early induction of RARbeta through AA/Wnt3a is required for PDX1 expression. Part of RA's activity is mediated by FGF signaling.
机译:背景:视黄酸(RA)和成纤维细胞生长因子4(FGF4)信号控制内胚层的形成和胰腺的诱导/扩增。基于这些发现,RA和FGFs(不包括FGF4)经常用于分化方案中,以指导hESC分化为内胚层和胰腺细胞类型。在体内,这些信号传导途径以时间和浓度依赖性方式起作用。然而,在体外,缺乏添加RA和FGF等生长和分化因子(GDF)的时间以及浓度的基础。因此,为了将ESC强大而可靠的分化方案发展为成熟的胰腺细胞类型,包括产生胰岛素的β细胞,重要的是机械地理解每个规格步骤。这包括将中胚层/定形内胚层分化为前肠内胚层-胰腺内胚层的起源。方法/主要发现:在这里,我们提供了有关RA和FGF4在指导由ActivinA(AA)诱导的hESC分化为表达PDX1的细胞中的个体和组合作用的数据。到目前为止,尚未测试FGF4在体外影响内胚层图案和规格的能力。通过测试最佳浓度和添加FGF4和RA的时机,我们提出了一个强大的分化方案,平均可产生32%PDX1(+)细胞。此外,我们表明RA是将AA诱导的hESC转化为PDX1(+)细胞所必需的,而部分潜在机制涉及FGF受体信号传导。最后,PDX1(+)细胞的进一步表征表明它们代表尚未定型为胰腺,后胃或十二指肠内胚层的前肠内胚层。结论/意义:总之,我们表明RA和FGF4共同以强有力和有效的方式指导PDX1(+)前肠内胚层的分化。 PDX1表达需要通过AA / Wnt3a早期诱导RARbeta介导的RA信号传导。 RA的部分活动由FGF信号传导介导。

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