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Multiscale microenvironmental perturbation of pluripotent stem cell fate and self-organization

机译:多能干细胞命运和自组织的多尺度微环境扰动

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摘要

The combination of microfluidics with engineered three-dimensional (3D) matrices can bring new insights into the fate regulation of stem cells and their self-organization into organoids. Although there has been progress in 3D stem cell culturing, most existing in vitro methodologies do not allow for mimicking of the spatiotemporal heterogeneity of stimuli that drive morphogenetic processes in vivo. To address this, we present a perfusion-free microchip concept for the in vitro 3D perturbation of stem cell fate. Stem cells are encapsulated in a hydrogel compartment that is flanked by open reservoirs for the diffusion-driven generation of biomolecule gradients. Juxtaposing additional compartments bearing supportive cells enables investigating the influence of long range cell-cell communication. We explore the utility of the microchips in manipulating early fate choices and self-organizing characteristics of 3D-cultured mouse embryonic stem cells (mESCs) under neural differentiation conditions and exposure to gradients of leukemia inhibitory factor (LIF). mESCs respond to LIF gradients in a spatially dependent manner. At higher LIF concentrations, multicellular colonies maintain pluripotency in contrast, at lower concentrations, mESCs develop into apicobasally polarized epithelial cysts. This versatile system can help to systematically explore the role of multifactorial microenvironments in promoting self-patterning of various stem cell types.
机译:微流控技术与工程三维(3D)矩阵的结合可以为干细胞的命运调控及其自组织为类器官带来新的见解。尽管3D干细胞培养取得了进展,但大多数现有的体外方法都无法模仿驱动体内形态发生过程的刺激物的时空异质性。为了解决这个问题,我们提出了无灌注微芯片概念,用于干细胞命运的体外3D扰动。干细胞被封装在水凝胶隔室中,水凝胶隔室的侧面是开放式储液池,用于扩散驱动的生物分子梯度生成。并置带有支撑细胞的其他隔室可以调查远程细胞与细胞间通讯的影响。我们探索微芯片在神经分化条件和暴露于白血病抑制因子(LIF)梯度下操纵3D培养的小鼠胚胎干细胞(mESCs)的早期命运选择和自组织特征的实用性。 mESC以空间相关的方式响应LIF梯度。相反,在较高的LIF浓度下,多细胞菌落保持多能性;在较低的浓度下,mESCs发育成顶突极化的上皮囊肿。这个多功能的系统可以帮助系统地探索多因素微环境在促进各种干细胞类型自我模式中的作用。

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