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Templated Macroporous Polyethylene Glycol Hydrogels for Spheroid and Aggregate Cell Culture

机译:用于球状和骨料细胞培养的模板化大孔聚乙二醇水凝胶

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Macroporous cell-laden hydrogels have recently gained recognition for a wide range of biomedical and bioengineering applications. There are various approaches to create porosity in hydrogels, including lyophilization or foam formation. However, many do not allow a precise control over pore size or are not compatible with in situ cell encapsulation. Here, we developed novel templated macro porous hydrogels by encapsulating uniform degradable hydrogel microspheres produced via microfluidics into a hydrogel slab. The microspheres degraded completely leaving macropores behind. Microsphere degradation was dependent on the incubation medium, microsphere size, microsphere confinement in the hydrogel as well as cell encapsulation. Uniquely, the degradable microspheres were biocompatible and when laden with cells, the cells were deposited in macropores upon microsphere degradation and formed multicellular aggregates. The hydrogel-encapsulated cell aggregates were used in a small drug screen to demonstrate the relevance of cell matrix interactions for multicellular spheroid drug responsiveness. Hydrogel-grown spheroid cultures are increasingly important in applications such as in vitro tumor, hepatocellular, and neurosphere cultures and drug screening; hence, the templated cell aggregate-laden hydrogels described here would find utility in various applications.
机译:大孔细胞升温水凝胶最近获得了广泛的生物医学和生物工程应用的识别。在水凝胶中产生孔隙率的各种方法,包括冻干或泡沫形成。然而,许多不允许对孔径的精确控制或与原位细胞封装不兼容。在这里,我们通过将通过微流体产生的均匀可降解的水凝胶微球封装到水凝胶板中来开发新型模板宏观多孔水凝胶。微球体完全退化后留下大孔。微球降解依赖于水凝胶中的培养培养基,微球尺寸,微球体监控以及细胞包封。唯一的是,可降解的微球是生物相容性的,并且当带有细胞时,在微球降解和形成多细胞聚集体上沉积细胞在大孔中沉积细胞。将水凝胶包封的细胞聚集体用于小药物筛选中,以证明细胞基质相互作用对多细胞球体药物反应性的相关性。水凝胶生长的球形培养物在体外肿瘤,肝细胞和神经圈培养和药物筛选中越来越重要;因此,这里描述的模板化细胞聚集水凝胶在各种应用中可以找到效用。

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