Laboratory for Sensors - IMTEK, University of Freiburg, 79110, Freiburg, Germany.
Cell Prolif. 2014 Apr;47(2):180-8. doi: 10.1111/j.1365-2184.2013.12089.x. Epub 2014 Jan 25.
Here we present an application, in two tumour cell lines, based on the Sensing Cell Culture Flask system as a cell culture monitoring tool for pericellular oxygen sensing.
T-47D (human breast cancer) and T98G (human brain cancer) cells were cultured either in atmospheric air or in a glove-box set at 4% oxygen, in both cases with 5% CO2 in the gas phase. Pericellular oxygen tension was measured with the help of an integrated sensor chip comprising oxygen sensor arrays.
Obtained results illustrate variation of pericellular oxygen tension in attached cells covered by stagnant medium. Independent of incubation conditions, low pericellular oxygen concentration levels, usually associated with hypoxia, were found in dense cell cultures.
Respiration alone brought pericellular oxygen concentration down to levels which could activate hypoxia-sensing regulatory processes in cultures believed to be aerobic. Cells in culture believed to experience conditions of mild hypoxia may, in reality, experience severe hypoxia. This would lead to incorrect assumptions and suggests that pericellular oxygen concentration readings are of great importance to obtain reproducible results when dealing with hypoxic and normoxic (aerobic) incubation conditions. The Sensing Cell Culture Flask system allows continuous monitoring of pericellular oxygen concentration with outstanding long-term stability and no need for recalibration during cell culture experiments. The sensor is integrated into the flask bottom, thus in direct contact with attached cells. No additional equipment needs to be inserted into the flask during culturing. Transparency of the electrochemical sensor chip allows optical inspection of cells attached on top of the sensor.
本研究旨在介绍一种应用,该应用基于 Sensing Cell Culture Flask 系统,作为用于细胞外氧感应的细胞培养监测工具,用于检测两种肿瘤细胞系中的细胞外氧感应。
T-47D(人乳腺癌)和 T98G(人脑癌细胞)细胞在大气环境或手套箱中培养,手套箱中的氧浓度为 4%,气相中 CO2 浓度为 5%。利用集成的传感器芯片(包含氧传感器阵列)来测量细胞外氧张力。
实验结果表明,在静止培养基覆盖的附着细胞中,细胞外氧张力会发生变化。无论培养条件如何,在密集的细胞培养物中都会发现低细胞外氧浓度水平,通常与缺氧有关。
单独的呼吸作用就可使细胞外氧浓度降低到足以激活被认为是有氧的培养物中缺氧感应调节过程的水平。在培养物中被认为处于轻度缺氧条件下的细胞,实际上可能处于严重缺氧状态。这将导致错误的假设,并表明在处理缺氧和正常氧(有氧)孵育条件时,细胞外氧浓度读数对于获得可重复的结果非常重要。Sensing Cell Culture Flask 系统允许对细胞外氧浓度进行连续监测,具有出色的长期稳定性,并且在细胞培养实验期间无需重新校准。传感器集成在瓶底,因此与附着的细胞直接接触。在培养过程中无需向瓶中插入额外的设备。电化学传感器芯片的透明度允许对附着在传感器顶部的细胞进行光学检查。