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Artificial three-dimensional niches deconstruct pancreas development in vitro

机译:人造三维生态位解构胰腺体外发育

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In the context of a cellular therapy for diabetes, methods for pancreatic progenitor expansion and subsequent differentiation into insulin-producing beta cells would be extremely valuable. Here we establish three-dimensional culture conditions in Matrigel that enable the efficient expansion of dissociated mouse embryonic pancreatic progenitors. By manipulating the medium composition we generate either hollow spheres, which are mainly composed of pancreatic progenitors, or complex organoids that spontaneously undergo pancreatic morphogenesis and differentiation. The in vitro maintenance and expansion of pancreatic progenitors require active Notch and FGF signaling, thus recapitulating in vivo niche signaling interactions. Our experiments reveal new aspects of pancreas development, such as a community effect by which small groups of cells better maintain progenitor properties and expand more efficiently than isolated cells, as well as the requirement for three-dimensionality. Finally, growth conditions in chemically defined biomaterials pave the way for testing the biophysical and biochemical properties of the niche that sustains pancreatic progenitors.
机译:在糖尿病的细胞疗法的背景下,用于胰腺祖细胞扩增和随后分化为产生胰岛素的β细胞的方法将非常有价值。在这里,我们在Matrigel中建立了三维培养条件,使解离的小鼠胚胎胰腺祖细胞有效扩增。通过操纵培养基成分,我们可以生成主要由胰腺祖细胞组成的空心球,也可以生成自发经历胰腺形态发生和分化的复杂类器官。胰腺祖细胞的体外维持和扩增需要活跃的Notch和FGF信号传导,从而概括了体内小生境信号传导的相互作用。我们的实验揭示了胰腺发育的新方面,例如社区效应,一小组细胞比分离的细胞更好地保持祖细胞特性并更有效地扩增,以及对三维的要求。最后,化学定义的生物材料中的生长条件为测试维持胰腺祖细胞的利基的生物物理和生化特性铺平了道路。

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