Hafner F
Molecular Devices GmbH, Ismaning, Germany.
Biosens Bioelectron. 2000 Jun;15(3-4):149-58. doi: 10.1016/s0956-5663(00)00069-5.
The Cytosensor Microphysiometer system detects functional responses from living cells in minutes and offers novel information on cell signalling that is often unobtainable with other assay methods. The principle of the system is based on the measurement of small changes in extracellular acidification, using a light addressable potentiometric sensor (LAPS). Energy metabolism in living cells is tightly coupled to cellular ATP usage, so that any event which perturbs cellular ATP levels--such as receptor activation and initiation of signal transduction--will result in a change in acid excretion. As the extrusion of protons is a very general parameter involved in the activation of nearly all kinds of membrane-bound receptors, receptors can be investigated without prior knowledge of the corresponding signalling pathway. However, by blocking certain signalling pathways inside the cell by means of signal transduction probes, specificity can be brought into the system and the corresponding receptor pathways can easily be elucidated. The aim is to give an overview about Cytosensor Microphysiometer technology and to demonstrate, with the help of some recent applications, the capability of the system to measure acidification rates from a wide variety of cell- and receptor-types coupled to different signal transduction pathways. This feature makes the cytosensor system an ideal tool for acting as a single assay system and circumventing the need for multiple assays.
细胞传感器微生理仪系统能在数分钟内检测活细胞的功能反应,并提供有关细胞信号传导的新信息,而这些信息通常是其他检测方法无法获得的。该系统的原理基于使用光寻址电位传感器(LAPS)测量细胞外酸化的微小变化。活细胞中的能量代谢与细胞ATP的使用紧密相关,因此任何干扰细胞ATP水平的事件——如受体激活和信号转导的启动——都会导致酸排泄的变化。由于质子的排出是几乎所有种类膜结合受体激活所涉及的一个非常普遍的参数,因此无需事先了解相应的信号通路就可以研究受体。然而,通过使用信号转导探针阻断细胞内的某些信号通路,可以使系统具有特异性,并且可以轻松阐明相应的受体通路。目的是概述细胞传感器微生理仪技术,并借助一些近期的应用,展示该系统测量与不同信号转导通路相关的各种细胞和受体类型的酸化速率的能力。这一特性使细胞传感器系统成为一个理想的工具,可作为单一检测系统,避免了进行多种检测的需要。