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用于3D组织模型功能药物筛选的基于微腔阵列(MCA)的生物传感器芯片。

Microcavity array (MCA)-based biosensor chip for functional drug screening of 3D tissue models.

作者信息

Kloss Daniel, Kurz Randy, Jahnke Heinz-Georg, Fischer Michael, Rothermel Andrée, Anderegg Ulf, Simon Jan C, Robitzki Andrea A

机构信息

Center for Biotechnology and Biomedicine (BBZ), University of Leipzig, Division of Molecular Biological-Biochemical Processing Technology, Deutscher Platz 5, 04103 Leipzig, Germany.

出版信息

Biosens Bioelectron. 2008 May 15;23(10):1473-80. doi: 10.1016/j.bios.2008.01.003. Epub 2008 Jan 12.

DOI:10.1016/j.bios.2008.01.003
PMID:18289841
Abstract

Multicellular tumour spheroids that mimic a native cellular environment are widely used as model systems for drug testing. To study drug effects on three-dimensional cultures in real-time we designed and fabricated a novel type of sensor chip for fast, non-destructive impedance spectroscopy and extracellular recording. Precultured spheroids are trapped between four gold electrodes. Fifteen individual 100microm deep square microcavities with sizes from 200 to 400microm allow an optimised positioning during the measurement. Although apoptosis was induced in human melanoma spheroids by Camptothecin (CTT), treated cultures did not show disintegration but displayed increased impedance magnitudes compared to controls after 8h resulting from an altered morphology of the outer cells. Contractions in cardiomyocyte spheroids were monitored when the innovative chip was used for recording of extracellular potentials. The silicon-based electrode array is used as an acute test system for the monitoring of any kind of 3D cell cultures. Since no adherence of cells or labelling is necessary the multifunctional sensor chip provides a basis for improved drug development by high content screenings with reduced costs and assay times. Additional improvements for parallel testing of different substances on one chip are presented.

摘要

模拟天然细胞环境的多细胞肿瘤球体被广泛用作药物测试的模型系统。为了实时研究药物对三维培养物的影响,我们设计并制造了一种新型传感器芯片,用于快速、无损的阻抗光谱分析和细胞外记录。预培养的球体被困在四个金电极之间。十五个单独的深度为100微米、尺寸从200到400微米的方形微腔,可在测量过程中实现优化定位。尽管喜树碱(CTT)在人黑色素瘤球体中诱导了细胞凋亡,但处理后的培养物并未显示解体,而是在8小时后与对照相比,由于外层细胞形态改变,阻抗幅度增加。当使用创新芯片记录细胞外电位时,监测了心肌细胞球体的收缩。基于硅的电极阵列用作监测任何类型三维细胞培养物的急性测试系统。由于无需细胞贴壁或标记,多功能传感器芯片为通过高内涵筛选降低成本和检测时间来改进药物开发提供了基础。还介绍了在一个芯片上对不同物质进行平行测试的其他改进方法。

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