Brischwein M, Motrescu E R, Cabala E, Otto A M, Grothe H, Wolf B
Heinz Nixdorf-Lehrstuhl für Medizinische Elektronik, Technische Universität München, Arcisstrasse 21, D-80290 München, Germany.
Lab Chip. 2003 Nov;3(4):234-40. doi: 10.1039/b308888j. Epub 2003 Oct 17.
Multiparametric silicon sensor chips mounted into biocompatible cell culture units have been used for investigations on cellular microphysiological patterns. Potentiometric, amperometric and impedimetric microsensors are combined on a common cell culture surface on the chip with an area of approximately 29 mm2. Extracellular acidification rates (with pH-sensitive field effect transistors, ISFETs), cellular oxygen consumption rates (with amperometric electrode structures) and cell morphological alterations (with impedimetric electrode structures, IDES) are monitored on single chips simultaneously for up to several days. The corresponding test device accommodates six of such sensor chips in parallel, provides electronic circuitry and maintains the required cell culture conditions (temperature, fluid perfusion system). Sensor data are transformed into quantitative information about microphysiologic conditions. The outcome of this transformation as well as reliability and sensitivity in detection of drug effects is discussed. This is the first report on multiparametric cell based assays with data obtained solely with integrated sensors on silicon chips. Those assays are required in different fields of application such as pharmaceutical drug screening, tumor chemosensitivity tests and environmental monitoring.
安装在生物相容性细胞培养单元中的多参数硅传感器芯片已用于细胞微生理模式的研究。电位、安培和阻抗微传感器在芯片上一个面积约为29平方毫米的公共细胞培养表面上组合在一起。细胞外酸化率(使用pH敏感场效应晶体管,即离子敏感场效应晶体管)、细胞耗氧率(使用安培电极结构)和细胞形态变化(使用阻抗电极结构)在单个芯片上同时监测长达数天。相应的测试装置可并行容纳六个这样的传感器芯片,提供电子电路并维持所需的细胞培养条件(温度、流体灌注系统)。传感器数据被转化为有关微生理条件的定量信息。讨论了这种转化的结果以及检测药物作用的可靠性和灵敏度。这是关于基于多参数细胞检测的第一份报告,其数据仅通过硅芯片上的集成传感器获得。这些检测在不同的应用领域中是必需的,如药物筛选、肿瘤化学敏感性测试和环境监测。