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使用膜进样质谱法进行动态校准和溶解气体分析以定量细胞呼吸。

Dynamic calibration and dissolved gas analysis using membrane inlet mass spectrometry for the quantification of cell respiration.

作者信息

Yang Tae Hoon, Wittmann Christoph, Heinzle Elmar

机构信息

Technische Biochemie, Saarland University, Im Stadtwald, Bldg. 2, D-66123 Saarbruecken, Germany.

出版信息

Rapid Commun Mass Spectrom. 2003;17(24):2721-31. doi: 10.1002/rcm.1251.

Abstract

A membrane inlet mass spectrometer connected to a miniaturized reactor was applied for dynamic dissolved gas analysis. Cell samples were taken from 7 mL shake flask cultures of Corynebacterium glutamicum ATCC 13032, and transferred to the 12 mL miniaturized reactor. There, oxygen uptake and carbon dioxide and its mass isotopomer production rates were determined using a new experimental procedure and applying nonlinear model equations. A novel dynamic method for the calibration of the membrane inlet mass spectrometer using first-order dynamics was developed. To derive total dissolved concentration of all carbon dioxide species (C(T)) from dissolved carbon dioxide concentration (CO(2)), the ratio of C(T) to CO(2) was determined by nonlinear parameter estimation, whereas the mass transfer coefficient of CO(2) was determined by the Wilke-Chang correlation. Subsequently, the suitability of the model equations for respiration measurements was examined using residual analysis and the Jarque-Bera hypothesis test. The resulting residuals were found to be random with normal distribution, which proved the adequacy of the application of the model for cell respiration analysis. Hence, dynamic changes in respiration activities could be accurately analyzed using membrane inlet mass spectrometry with the novel calibration method.

摘要

将连接到小型反应器的膜进样质谱仪用于动态溶解气体分析。从谷氨酸棒杆菌ATCC 13032的7 mL摇瓶培养物中采集细胞样品,并转移至12 mL小型反应器中。在那里,使用新的实验程序并应用非线性模型方程来测定氧气摄取量以及二氧化碳及其质量同位素异构体的产生速率。开发了一种使用一级动力学对膜进样质谱仪进行校准的新型动态方法。为了从溶解二氧化碳浓度(CO₂)推导出所有二氧化碳物种的总溶解浓度(C(T)),通过非线性参数估计确定C(T)与CO₂的比率,而CO₂的传质系数则通过Wilke-Chang关联式确定。随后,使用残差分析和Jarque-Bera假设检验来检验模型方程用于呼吸测量的适用性。结果发现所得残差是呈正态分布的随机值,这证明了该模型用于细胞呼吸分析的适用性。因此,使用新型校准方法的膜进样质谱法可以准确分析呼吸活动的动态变化。

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