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System for measuring oxygen consumption rates of mammalian cells in static culture under hypoxic conditions

机译:在缺氧条件下测量静态培养中哺乳动物细胞氧气消耗率的系统

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Estimating the oxygen consumption rates (OCRs) of mammalian cells in hypoxic environments is essential for designing and developing a three-dimensional (3-D) cell culture system. However, OCR measurements under hypoxic conditions are infrequently reported in the literature. Here, we developed a system for measuring OCRs at low oxygen levels. The system injects nitrogen gas into the environment and measures the oxygen concentration by an optical oxygen microsensor that consumes no oxygen. The developed system was applied to HepG2 cells in static culture. Specifically, we measured the spatial profiles of the local dissolved oxygen concentration in the medium, then estimated the OCRs of the cells. The OCRs, and also the pericellular oxygen concentrations, decreased nonlinearly as the oxygen partial pressure in the environment decreased from 19% to 1%. The OCRs also depended on the culture period and the matrix used for coating the dish surface. Using this system, we can precisely estimate the OCRs of various cell types under environments that mimic 3-D culture conditions, contributing crucial data for an efficient 3-D culture system design. (c) 2015 American Institute of Chemical Engineers Biotechnol. Prog., 32:189-197, 2016
机译:估计缺氧环境中哺乳动物细胞的氧气消耗率(OCRS)对于设计和开发三维(3-D)细胞培养系统至关重要。然而,在缺氧条件下的OCR测量很少报道文献中。在这里,我们开发了一种用于在低氧水平下测量OCR的系统。该系统将氮气注入环境中并通过消耗氧的光学氧微血管测量氧浓度。将开发系统应用于静态培养的HepG2细胞。具体地,我们测量介质中局部溶解氧浓度的空间谱,然后估计细胞的OCR。由于环境中的氧分压从19%降至1%,OCRS和围孔氧浓度下降非线性下降。 OCR也依赖于培养期和用于涂覆盘表面的基质。使用该系统,我们可以在模拟3-D培养条件的环境下精确地估计各种细胞类型的OCR,为有效的3-D培养系统设计提供关键数据。 (c)2015美国化学工程研究所生物科技。 Prog。,32:189-197,2016

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