On-Line Determination of Optimum Time for Switching from Growth Phase to Production Phase in Tissue Plasminogen Activator Production in a Microcarrier Cell Culture
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概要
- 論文の詳細を見る
To maximize the productivity of tissue plasminogen activator (TPA) by a mammalian cell culture, on-line determination of the optimum time to switch from the cell growth phase to the TPA production phase was investigated. By measuring the TPA production activity of the cells during the cell growth culture, it was shown that this optimum time was not necessarily the same as the time at which the cell concentration was maximized, and that the optimum time varied with growth culture batch. The TPA production activity of the cells during the growth culture could be estimated by on-line regression analysis using physiological data of the current state, including the oxygen consumption rate (Io_2) and cell concentration, as well as data from past batches. Applying this on-line estimation, the optimum switching time was determined to be the time at which the TPA production activity of the cells in the growth culture became highest, or higher than a certain value according to determined criteria.
- 社団法人日本生物工学会の論文
- 1994-06-25
著者
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Takagi Mutsumi
Life Science Research Laboratories Asahi Chemical Industry Company Ltd.
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UEDA KAZUO
Life Science Research Laboratories, Asahi Chemical Industry Company Ltd.,
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Ueda Kazuo
Life Science Research Laboratories Asahi Chemical Industry Company Ltd.
関連論文
- Effect of Insoluble Medium Component on the Productivity of Tissue Plasminogen Activator by Cells on Microcarriers
- An Oxygen Supply Strategy for the Large-Scale Production of Tissue Plasminogen Activator by Microcarrier Cell Culture
- A Low-Serum Medium with BSA and Ferrous Sulfate for the Production of Tissue Plasminogen Activator by Human Embryo Lung Cells
- On-Line Continuous Measurement of the Oxygen Consumption Rate in Mammalian Cell Culture
- On-Line Determination of Optimum Time for Switching from Growth Phase to Production Phase in Tissue Plasminogen Activator Production in a Microcarrier Cell Culture