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使用单个互补金属氧化物半导体离子敏感场效应晶体管同时测量细胞呼吸和酸化作用。

Simultaneous measurement of cellular respiration and acidification with a single CMOS ISFET.

作者信息

Lehmann M, Baumann W, Brischwein M, Gahle H, Freund I, Ehret R, Drechsler S, Palzer H, Kleintges M, Sieben U, Wolf B

机构信息

Micronas GmbH, Hans-Bunte-Str. 19, 79108, Freiburg, Germany.

出版信息

Biosens Bioelectron. 2001 May;16(3):195-203. doi: 10.1016/s0956-5663(01)00123-3.

Abstract

In vivo, the pH value and oxygen partial pressure are the most important physico-chemical parameters in the microenvironment of human tissues. In vitro, the extracellular acidification rate of cell cultures is an indicator of global cellular metabolism, while the rate of oxygen consumption is a measure of mitochondrial activity. Earlier approaches had the disadvantage that these two values had to be measured with two separate sensors at different loci within the tissue or cell culture. Furthermore, conventional Clark-type oxygen sensors are not very compatible for miniaturisation, making it impossible to measure at small cell volumes or even at the single cell level. We have, therefore, developed an ISFET based sensor structure which is able to measure both pH and oxygen partial pressure. This sensor structure was tested in vitro for simultaneous records of cellular acidification and respiration rates at the same site within the cell culture. This sensor is manufactured by a CMOS-process.

摘要

在体内,pH值和氧分压是人体组织微环境中最重要的物理化学参数。在体外,细胞培养物的细胞外酸化率是整体细胞代谢的指标,而耗氧率是线粒体活性的度量。早期的方法存在缺点,即这两个值必须使用两个单独的传感器在组织或细胞培养物内的不同位点进行测量。此外,传统的克拉克型氧传感器不太适合小型化,使得无法在小细胞体积甚至单细胞水平进行测量。因此,我们开发了一种基于离子敏感场效应晶体管(ISFET)的传感器结构,它能够测量pH值和氧分压。该传感器结构在体外进行了测试,用于在细胞培养物内的同一位点同时记录细胞酸化和呼吸速率。这种传感器是通过互补金属氧化物半导体(CMOS)工艺制造的。

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