The quantitative comprehension of microbial metabolic networks is a prerequisite for an efficient rational strain improvement ("metabolic engineering"). It is therefore necessary to accurately determine the concentration of a large number of reactants (i.e., metabolites, nucleotides, cofactors) in order to understand "in vivo" reaction kinetics. Quantification of intracellular concentrations of glycolytic intermediates and nucleotides in Escherichia coli K12 using a perchloric acid extraction and an LC-ESI-MS method was achieved. Intracellular metabolites (e.g., glucose 6-phosphate, fructose 1,6-bisphosphate, 6-phospho gluconate, acetyl-CoA, adenine nucleotides) were quantified under defined (glucose-limited steady-state) growth conditions....
To increase productivities and production rates in cell culture, various approaches are under invest...
Future requirements concerning process optimization and validation in mammalian cell culture will in...
Many strategies for optimization in animal cell culture focus on an improvement of growth conditions...
The rational improvement of microbial strains for the production of primary and secondary metabolite...
The rational improvement of the productivity of cellular systems is one of the main goals of modern ...
Absolute metabolite concentrations are critical to a quantitative understanding of cellular metaboli...
A comprehensive method of quantifying intracellular metabolite concentrations would be a valuable ad...
A highly selective and sensitive method for identification and quantification of intracellular metab...
13C metabolic flux analysis (MFA) is a tool of metabolic engineering for investigation of in vivo fl...
International audienceAn experimental procedure for the quantification of intracellular concentratio...
The analysis of metabolites is an important prerequisite for the optimization of many biotechnologic...
Technologies developed for the detection, identification and quantification of endogenous metabolite...
Sample preparation is one of the most important steps in metabolome analysis. The challenges of dete...
The analysis of metabolic intermediates is a rich source of isotopic information for C-13 metabolic ...
Obtaining meaningful snapshots of the metabolome of microorganisms requires rapid sampling and immed...
To increase productivities and production rates in cell culture, various approaches are under invest...
Future requirements concerning process optimization and validation in mammalian cell culture will in...
Many strategies for optimization in animal cell culture focus on an improvement of growth conditions...
The rational improvement of microbial strains for the production of primary and secondary metabolite...
The rational improvement of the productivity of cellular systems is one of the main goals of modern ...
Absolute metabolite concentrations are critical to a quantitative understanding of cellular metaboli...
A comprehensive method of quantifying intracellular metabolite concentrations would be a valuable ad...
A highly selective and sensitive method for identification and quantification of intracellular metab...
13C metabolic flux analysis (MFA) is a tool of metabolic engineering for investigation of in vivo fl...
International audienceAn experimental procedure for the quantification of intracellular concentratio...
The analysis of metabolites is an important prerequisite for the optimization of many biotechnologic...
Technologies developed for the detection, identification and quantification of endogenous metabolite...
Sample preparation is one of the most important steps in metabolome analysis. The challenges of dete...
The analysis of metabolic intermediates is a rich source of isotopic information for C-13 metabolic ...
Obtaining meaningful snapshots of the metabolome of microorganisms requires rapid sampling and immed...
To increase productivities and production rates in cell culture, various approaches are under invest...
Future requirements concerning process optimization and validation in mammalian cell culture will in...
Many strategies for optimization in animal cell culture focus on an improvement of growth conditions...