Metabolic engineering of various industrial microorganisms to produce chemicals, fuels, and drugs has raised interest since it is environmentally friendly, sustainable, and independent of nonrenewable resources. However, microbial metabolism is so complex that only a few metabolic engineering efforts have been able to achieve a satisfactory yield, titer or productivity of the target chemicals for industrial commercialization. In order to overcome this challenge, 13C Metabolic Flux Analysis (13C-MFA) has been continuously developed and widely applied to rigorously investigate cell metabolism and quantify the carbon flux distribution in central metabolic pathways. In the past decade, many 13C-MFA studies have been performed in academic labs a...
Characterization of engineered cellular systems is required for understanding the metabolic state an...
Decoding microbial metabolism is of great importance in revealing the mechanisms governing the physi...
13C metabolic flux analysis (MFA) is a tool of metabolic engineering for investigation of in vivo fl...
The determination of fluxes is an important parameter to define the extent to which enzymes particip...
The determination of fluxes is an important parameter to define the extent to which enzymes particip...
Flux analysis techniques, including flux balance analysis (FBA) and 13C-metabolic flux analysis (MFA...
Antoniewicz, Maciek R.13C-Metabolic flux analysis (13C-MFA) is a powerful tool for characterizing me...
Metabolic flux analysis (MFA) quantitatively describes cellular fluxes to understand metabolic pheno...
Accelerating the Design-Build-Test-Learn (DBTL) cycle in synthetic biology is critical to achieving ...
Accelerating the Design-Build-Test-Learn (DBTL) cycle in synthetic biology is critical to achieving ...
Accelerating the Design-Build-Test-Learn (DBTL) cycle in synthetic biology is critical to achieving ...
Industrial bioprocesses place extraordinary demands on the intermediary metabolism of host cells to ...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Deciphering the mechanisms of regulation of metabolic networks subjected to perturbations, including...
Characterization of engineered cellular systems is required for understanding the metabolic state an...
Decoding microbial metabolism is of great importance in revealing the mechanisms governing the physi...
13C metabolic flux analysis (MFA) is a tool of metabolic engineering for investigation of in vivo fl...
The determination of fluxes is an important parameter to define the extent to which enzymes particip...
The determination of fluxes is an important parameter to define the extent to which enzymes particip...
Flux analysis techniques, including flux balance analysis (FBA) and 13C-metabolic flux analysis (MFA...
Antoniewicz, Maciek R.13C-Metabolic flux analysis (13C-MFA) is a powerful tool for characterizing me...
Metabolic flux analysis (MFA) quantitatively describes cellular fluxes to understand metabolic pheno...
Accelerating the Design-Build-Test-Learn (DBTL) cycle in synthetic biology is critical to achieving ...
Accelerating the Design-Build-Test-Learn (DBTL) cycle in synthetic biology is critical to achieving ...
Accelerating the Design-Build-Test-Learn (DBTL) cycle in synthetic biology is critical to achieving ...
Industrial bioprocesses place extraordinary demands on the intermediary metabolism of host cells to ...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Synthetic biology is a rapidly developing field that pursues the application of engineering principl...
Deciphering the mechanisms of regulation of metabolic networks subjected to perturbations, including...
Characterization of engineered cellular systems is required for understanding the metabolic state an...
Decoding microbial metabolism is of great importance in revealing the mechanisms governing the physi...
13C metabolic flux analysis (MFA) is a tool of metabolic engineering for investigation of in vivo fl...