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A 3D printed microfluidic device for production of functionalized hydrogel microcapsules for culture and differentiation of human Neuronal Stem Cells (hNSC)

机译:用于生产功能化水凝胶微囊的3D打印微流控设备,用于培养和分化人神经元干细胞(hNSC)

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摘要

We present here a microfluidic device that generates sub-millimetric hollow hydrogel spheres, encapsulating cells and coated internally with a layer of reconstituted extracellular matrix (ECM) of a few microns thick. The spherical capsules, composed of alginate hydrogel, originate from the spontaneous instability of a multi-layered jet formed by co-extrusion using a coaxial flow device. We provide a simple design to manufacture this device using a DLP (digital light processing) 3D printer. Then, we demonstrate how the inner wall of the capsules can be decorated with a continuous ECM layer that is anchored to the alginate gel and mimics the basal membrane of a cellular niche. Finally, we used this approach to encapsulate human Neural Stem Cells (hNSC) derived from human Induced Pluripotent Stem Cells (hIPSC), which were further differentiated into neurons within the capsules with negligible loss of viability. Altogether, we show that these capsules may serve as cell micro-containers compatible with complex cell culture conditions and applications. These developments widen the field of research and biomedical applications of the cell encapsulation technology.
机译:我们在这里介绍了一种微流体装置,该装置可产生亚毫米级的中空水凝胶球,封装细胞并在内部涂覆一层几微米厚的重构细胞外基质(ECM)。由藻酸盐水凝胶组成的球形胶囊源自使用同轴流动装置通过共挤出形成的多层射流的自发不稳定性。我们提供了使用DLP(数字光处理)3D打印机制造此设备的简单设计。然后,我们演示了如何用连续的ECM层装饰胶囊的内壁,该层固定在藻酸盐凝胶上并模仿细胞壁iche的基底膜。最后,我们使用这种方法封装了源自人类诱导性多能干细胞(hIPSC)的人类神经干细胞(hNSC),这些神经干细胞进一步分化为胶囊内的神经元,活力丧失可忽略不计。总而言之,我们表明这些胶囊可作为与复杂细胞培养条件和应用兼容的细胞微容器。这些发展拓宽了细胞包封技术的研究和生物医学应用领域。

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