» Articles » PMID: 18095336

Identification of Metabolic Fluxes in Hepatic Cells from Transient 13C-labeling Experiments: Part II. Flux Estimation

Overview
Publisher Wiley
Specialty Biochemistry
Date 2007 Dec 21
PMID 18095336
Citations 24
Authors
Affiliations
Soon will be listed here.
Abstract

This contribution addresses the identification of metabolic fluxes and metabolite concentrations in mammalian cells from transient (13)C-labeling experiments. Whilst part I describes experimental set-up and acquisition of required metabolite and (13)C-labeling data, part II focuses on setting up network models and the estimation of intracellular fluxes. Metabolic fluxes were determined in glycolysis, pentose-phosphate pathway (PPP), and citric acid cycle (TCA) in a hepatoma cell line grown in aerobic batch cultures. In glycolytic and PPP metabolite pools isotopic stationarity was observed within 30 min, whereas in the TCA cycle the labeling redistribution did not reach isotopic steady state even within 180 min. In silico labeling dynamics were in accordance with in vivo (13)C-labeling data. Split ratio between glycolysis and PPP was 57%:43%; intracellular glucose concentration was estimated at 101.6 nmol per 10(6) cells. In contrast to isotopic stationary (13)C-flux analysis, transient (13)C-flux analysis can also be applied to industrially relevant mammalian cell fed-batch and batch cultures.

Citing Articles

Integrating a dynamic central metabolism model of cancer cells with a hybrid 3D multiscale model for vascular hepatocellular carcinoma growth.

Lapin A, Perfahl H, Jain H, Reuss M Sci Rep. 2022; 12(1):12373.

PMID: 35858953 PMC: 9300625. DOI: 10.1038/s41598-022-15767-6.


Compartment-specific C metabolic flux analysis reveals boosted NADPH availability coinciding with increased cell-specific productivity for IgG1 producing CHO cells after MTA treatment.

Wijaya A, Verhagen N, Teleki A, Takors R Eng Life Sci. 2021; 21(12):832-847.

PMID: 34899120 PMC: 8638276. DOI: 10.1002/elsc.202100057.


Streamlining the Analysis of Dynamic C-Labeling Patterns for the Metabolic Engineering of as l-Histidine Production Host.

Feith A, Schwentner A, Teleki A, Favilli L, Blombach B, Takors R Metabolites. 2020; 10(11).

PMID: 33198305 PMC: 7696456. DOI: 10.3390/metabo10110458.


HILIC-Enabled C Metabolomics Strategies: Comparing Quantitative Precision and Spectral Accuracy of QTOF High- and QQQ Low-Resolution Mass Spectrometry.

Feith A, Teleki A, Graf M, Favilli L, Takors R Metabolites. 2019; 9(4).

PMID: 30986989 PMC: 6523712. DOI: 10.3390/metabo9040063.


Hyperpolarized δ-[1- C]gluconolactone as a probe of the pentose phosphate pathway.

Moreno K, Harrison C, Merritt M, Kovacs Z, Malloy C, Sherry A NMR Biomed. 2017; 30(6).

PMID: 28272754 PMC: 5502806. DOI: 10.1002/nbm.3713.