Neurogenesis and Organogenesis Group, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan.
Nature. 2011 Nov 9;480(7375):57-62. doi: 10.1038/nature10637.
The adenohypophysis (anterior pituitary) is a major centre for systemic hormones. At present, no efficient stem-cell culture for its generation is available, partly because of insufficient knowledge about how the pituitary primordium (Rathke's pouch) is induced in the embryonic head ectoderm. Here we report efficient self-formation of three-dimensional adenohypophysis tissues in an aggregate culture of mouse embryonic stem (ES) cells. ES cells were stimulated to differentiate into non-neural head ectoderm and hypothalamic neuroectoderm in adjacent layers within the aggregate, and treated with hedgehog signalling. Self-organization of Rathke's-pouch-like three-dimensional structures occurred at the interface of these two epithelia, as seen in vivo, and various endocrine cells including corticotrophs and somatotrophs were subsequently produced. The corticotrophs efficiently secreted adrenocorticotropic hormone in response to corticotrophin releasing hormone and, when grafted in vivo, these cells rescued the systemic glucocorticoid level in hypopituitary mice. Thus, functional anterior pituitary tissue self-forms in ES cell culture, recapitulating local tissue interactions.
腺垂体(垂体前叶)是全身激素的主要中心。目前,由于对胚胎头部外胚层中如何诱导垂体原基(Rathke 囊)的了解不足,因此无法有效地对其进行干细胞培养。在这里,我们报告了在小鼠胚胎干细胞(ES 细胞)的聚集培养中,三维腺垂体组织的有效自我形成。ES 细胞被刺激分化为聚集体中相邻层的非神经头部外胚层和下丘脑神经外胚层,并接受 hedgehog 信号转导。与体内所见一样,Rathke 囊样三维结构的自组织发生在这两种上皮的交界处,随后产生了各种内分泌细胞,包括促肾上腺皮质激素细胞和生长激素细胞。促肾上腺皮质激素细胞在受到促肾上腺皮质激素释放激素刺激后能够有效地分泌促肾上腺皮质激素,并且当在体内移植时,这些细胞可以挽救垂体功能减退小鼠的全身糖皮质激素水平。因此,功能性前垂体组织在 ES 细胞培养中自我形成,再现了局部组织相互作用。