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On-line Monitoring of IPTG Induction for Recombinant Protein Production Using an Automatic pH Control Signal

机译:使用自动pH控制信号在线监测IPTG诱导重组蛋白生产

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The response of IPTG induction was investigated through the monitoring of the alkali consumption rate and buffer capacity during the cultivation of recombinant E. coli BL21(DE3) harboring the plasmid pRSET-LacZ under the control of lac promoter. The rate of alkali consumption increased along with cell growth, but declined suddenly after approximately 0.2 h of IPTG induction. The buffer capacity also declined after 0.9 h of IPTG induction. The profile of buffer capacity seems to correlate with the level of acetate production. The IPTG response was monitored only when introduced into the mid-exponential phase of bacterial cell growth. The minimum concentration of IPTG for induction, which was found out to be 0.1 mM, can also be monitored on-line and in-situ. Therefore, the on-line monitoring of alkali consumption rate and buffer capacity can be an indicator of the metabolic shift initiated by IPTG supplement, as well as for the physiological state of cell growth.
机译:通过监测在lac启动子控制下携带质粒pRSET-LacZ的重组大肠杆菌BL21(DE3)的培养过程中碱消耗速率和缓冲能力的监测来研究IPTG诱导的响应。碱消耗的速率随细胞生长而增加,但在IPTG诱导约0.2 h后突然下降。 IPTG诱导0.9 h后,缓冲液容量也下降。缓冲能力的概况似乎与乙酸盐产生水平相关。仅当将IPTG响应引入细菌细胞生长的中指数期时,才进行监测。诱导的IPTG最低浓度为0.1 mM,也可以在线和就地监测。因此,对碱消耗速率和缓冲能力的在线监测可以作为IPTG补充剂引发的代谢变化以及细胞生长的生理状态的指标。

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