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半乳糖化纤维素海绵用于多孔药物安全测试。

Galactosylated cellulosic sponge for multi-well drug safety testing.

机构信息

NUS Graduate School for Integrative Sciences and Engineering, Centre for Life Sciences, Singapore, Singapore.

出版信息

Biomaterials. 2011 Oct;32(29):6982-94. doi: 10.1016/j.biomaterials.2011.05.087. Epub 2011 Jul 8.

DOI:10.1016/j.biomaterials.2011.05.087
PMID:21741702
Abstract

Hepatocyte spheroids can maintain mature differentiated functions, but collide to form bulkier structures when in extended culture. When the spheroid diameter exceeds 200 μm, cells in the inner core experience hypoxia and limited access to nutrients and drugs. Here we report the development of a thin galactosylated cellulosic sponge to culture hepatocytes in multi-well plates as 3D spheroids, and constrain them within a macroporous scaffold network to maintain spheroid size and prevent detachment. The hydrogel-based soft sponge conjugated with galactose provided suitable mechanical and chemical cues to support rapid formation of hepatocyte spheroids with a mature hepatocyte phenotype. The spheroids tethered in the sponge showed excellent maintenance of 3D cell morphology, cell-cell interaction, polarity, metabolic and transporter function and/or expression. For example, cytochrome P450 (CYP1A2, CYP2B2 and CYP3A2) activities were significantly elevated in spheroids exposed to β-naphthoflavone, phenobarbital, or pregnenolone-16α-carbonitrile, respectively. The sponge also exhibits minimal drug absorption compared to other commercially available scaffolds. As the cell seeding and culture protocols are similar to various high-throughput 2D cell-based assays, this platform is readily scalable and provides an alternative to current hepatocyte platforms used in drug safety testing applications.

摘要

肝细胞球体能维持成熟的分化功能,但在延长培养时会相互碰撞形成更大的结构。当球体直径超过 200μm 时,内部核心的细胞会经历缺氧和有限的营养物质和药物摄取。在这里,我们报告了一种薄的半乳糖化纤维素海绵的开发,用于在多孔板中培养肝细胞作为 3D 球体,并将其限制在大孔支架网络内,以维持球体大小并防止脱落。基于水凝胶的软海绵与半乳糖结合,提供了合适的机械和化学线索,支持快速形成具有成熟肝细胞表型的肝细胞球体。固定在海绵中的球体表现出出色的 3D 细胞形态、细胞间相互作用、极性、代谢和转运蛋白功能和/或表达的维持。例如,暴露于β-萘黄酮、苯巴比妥或孕烯醇酮-16α-腈的球体中细胞色素 P450(CYP1A2、CYP2B2 和 CYP3A2)的活性显著升高。与其他市售支架相比,海绵的药物吸收也最小。由于细胞接种和培养方案与各种高通量 2D 基于细胞的测定相似,因此该平台易于扩展,并为药物安全测试应用中当前使用的肝细胞平台提供了替代方案。

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