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Sliced Magnetic Polyacrylamide Hydrogel with Cell-Adhesive Microarray Interface: A Novel Multicellular Spheroid Culturing Platform

机译:切片磁性聚丙烯酰胺水凝胶与细胞粘附微阵列接口:新型的多细胞球体培养平台。

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摘要

Cell-adhesive properties are of great significance to materials serving as extracellular matrix mimics. Appropriate cell-adhesive property of material interface can balance the cell matrix interaction and cell cell interaction and can promote cells to form 3D structures. Herein, a novel magnetic polyacrylamide (PAM) hydrogel fabricated via combining magnetostatic field induced magnetic nanopatticles assembly and hydrogel gelation was applied as a multicellular spheroids culturing platform. When cultured on the cell-adhesive microarray interface of sliced magnetic hydrogel, normal and tumor cells from different cell lines could rapidly form multicellular spheroids spontaneously. Furthermore, cells which could only form loose cell aggregates in a classic 3D cell culture model (such as hanging drop system) were able to be promoted to form multicellular spheroids on this platform. In the light of its simplicity in fabricating as well as its effectiveness in promoting formation of multicellular spheroids which was considered as a prevailing tool in the study of the microenvironmental regulation of tumor cell physiology and therapeutic problems, this composite material holds promise in anticancer drugs or hyperthermia therapy evaluation in vitro in the future.
机译:细胞粘附特性对于用作细胞外基质模拟物的材料具有重要意义。材料界面的适当细胞粘附特性可以平衡细胞基质相互作用和细胞间相互作用,并可以促进细胞形成3D结构。在本文中,将静磁场诱导的磁性纳米粒子组装和水凝胶凝胶化相结合制备的新型磁性聚丙烯酰胺(PAM)水凝胶作为多细胞球体培养平台。当在切片磁性水凝胶的细胞粘附微阵列界面上培养时,来自不同细胞系的正常细胞和肿瘤细胞可迅速自发形成多细胞球体。此外,只能在经典的3D细胞培养模型(如吊滴系统)中形成松散细胞聚集体的细胞能够在此平台上被促进形成多细胞球体。考虑到它的制造简单性和促进多细胞球体形成的有效性(被认为是研究肿瘤细胞生理和治疗问题的微环境调节的主要工具),这种复合材料在抗癌药物或将来在体外进行热疗治疗评估。

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