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Differentiation of mouse embryonic stem cells into growth hormone and prolactin expressing cells in vitro.

机译:小鼠胚胎干细胞在体外分化为生长激素和催乳激素表达细胞。

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摘要

Embryonic stem (ES) cells provide an excellent in vitro model system to investigate the cellular and molecular events that drive lineage-specific commitment and differentiation and have considerable potential as agents for novel cell-based therapies. While culture methods for directed in vitro differentiation of ES into neuroectodermal and mesodermal derivatives are relatively well established, little is known about the capacity of ES cells to generate the hormone secreting lineages of the pituitary. Here we show that extended culture of adherent embryoid bodies (EBs) results in the induction of pituitary-specific progenitor marker genes and pituitary hormonal markers. GH-expressing cells comprise approximately 2% of the total viable cell population and exhibit dense granular cytoplasmic immunoreactivity. These data demonstrate for the first time that cell types which have the characteristics of pituitary somatotropes and lactotropes can be generated by in vitro differentiation of mouse ES cells.
机译:胚胎干(ES)细胞提供了一个出色的体外模型系统,用于研究细胞和分子事件,这些事件可驱动谱系特异性的定位和分化,并具有作为新型基于细胞疗法的潜力。虽然用于将ES定向分化为神经外胚层和中胚层衍生物的培养方法已相对完善,但对ES细胞产生垂体激素分泌谱系的能力知之甚少。在这里,我们显示粘附的类胚体(EBs)的扩展培养导致垂体特异性祖细胞标记基因和垂体激素标记的诱导。表达GH的细胞约占总活细胞总数的2%,并表现出致密的颗粒细胞质免疫反应性。这些数据首次证明了可以通过体外分化小鼠ES细胞来产生具有垂体生长激素和促乳酸细胞特征的细胞类型。

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