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A Droplet Microfluidic System to Fabricate Hybrid Capsules Enabling Stem Cell Organoid Engineering

机译:液滴微流控系统以制造使干细胞器官工程的混合胶囊。

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摘要

Organoids derived from self‐organizing stem cells represent a major technological breakthrough with the potential to revolutionize biomedical research. However, building high‐fidelity organoids in a reproducible and high‐throughput manner remains challenging. Here, a droplet microfluidic system is developed for controllable fabrication of hybrid hydrogel capsules, which allows for massive 3D culture and formation of functional and uniform islet organoids derived from human‐induced pluripotent stem cells (hiPSCs). In this all‐in‐water microfluidic system, an array of droplets is utilized as templates for one‐step fabrication of binary capsules relying on interfacial complexation of oppositely charged Na‐alginate (NaA) and chitosan (CS). The produced hybrid capsules exhibit high uniformity, and are biocompatible, stable, and permeable. The established system enables capsule production, 3D culture, and self‐organizing formation of human islet organoids in a continuous process by encapsulating pancreatic endocrine cells from hiPSCs. The generated islet organoids contain islet‐specific α‐ and β‐like cells with high expression of pancreatic hormone specific genes and proteins. Moreover, they exhibit sensitive glucose‐stimulated insulin secretion function, demonstrating the capability of these binary capsules to engineer human organoids from hiPSCs. The proposed system is scalable, easy‐to‐operate, and stable, which can offer a robust platform for advancing human organoids research and translational applications.
机译:来自自组织干细胞的类器官代表了一项重大技术突破,具有革新生物医学研究的潜力。但是,以可重现和高通量的方式构建高保真类器官仍然具有挑战性。在这里,开发了一种微滴微流体系统,用于可控地制造混合水凝胶胶囊,该系统可进行大规模3D培养,并形成源自人诱导性多能干细胞(hiPSC)的功能性且均匀的胰岛类器官。在这种全水微流系统中,依靠带相反电荷的海藻酸钠(NaA)和脱乙酰壳多糖(CS)的界面络合,将一系列液滴用作一步制备二元胶囊的模板。所生产的混合胶囊表现出高度的均匀性,并且是生物相容的,稳定的和可渗透的。通过封装来自hiPSC的胰腺内分泌细胞,已建立的系统能够实现胶囊生产,3D培养和人类胰岛类器官的自组织形成。生成的胰岛类器官包含胰岛特异的α和β类细胞,这些细胞高表达胰腺激素特异的基因和蛋白质。此外,它们还表现出敏感的葡萄糖刺激的胰岛素分泌功能,证明了这些二元胶囊能够从hiPSC中改造人类器官的能力。拟议的系统具有可扩展性,易于操作和稳定的特点,可以为推进人类类器官的研究和翻译应用提供一个强大的平台。

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