William G. Lowrie Dept. of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, OH 43210, USA.
Biotechnol Prog. 2010 Jul-Aug;26(4):1135-44. doi: 10.1002/btpr.423.
One important application of tissue engineering is to provide novel in vitro models for cell-based assays. Perfusion microbioreactor array provides a useful tool for microscale tissue culture in parallel. However, high-throughput data generation has been a challenge. In this study, a 4 x 4 array of perfusion microbioreactors was developed for plate-reader compatible, time-series quantification of cell proliferation, and cytotoxicity assays. The device was built through multilayer soft lithography. Low-cost nonwoven polyethylene terephthalate fibrous matrices were integrated as modular tissue culture scaffolds. Human colon cancer HT-29 cells with stable expression of enhanced green fluorescent protein were cultured in the device with continuous perfusion and reached a cell density over 5 x 10(7) cells/mL. The microbioreactor array was used to test a chemotherapeutic drug 5-FU for its effect on HT-29 cells in continuous perfusion 3D culture. Compared with conventional 2D cytotoxicity assay, significant drug resistance was observed in the 3D perfusion culture.
组织工程的一个重要应用是提供用于基于细胞的测定的新型体外模型。灌注式微生物反应器阵列为微尺度组织培养提供了有用的工具。然而,高通量数据的生成一直是一个挑战。在这项研究中,开发了一个 4 x 4 个灌注式微生物反应器阵列,用于板读数器兼容的细胞增殖和细胞毒性测定的时间序列定量。该设备是通过多层软光刻制造的。低成本的无纺聚酯纤维基质被集成作为模块化的组织培养支架。稳定表达增强型绿色荧光蛋白的人结肠癌细胞 HT-29 在该设备中进行连续灌注培养,细胞密度超过 5 x 10(7) 个细胞/mL。该微生物反应器阵列用于在连续灌注 3D 培养中测试化疗药物 5-FU 对 HT-29 细胞的作用。与传统的 2D 细胞毒性测定相比,在 3D 灌注培养中观察到明显的药物耐药性。