Metabolic design of macroscopic bioreaction models: application to Chinese hamster ovary cells

scientific article published on 30 September 2006

Metabolic design of macroscopic bioreaction models: application to Chinese hamster ovary cells is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1007/S00449-006-0083-Y
P932PMC publication ID1764600
P698PubMed publication ID17013615
P5875ResearchGate publication ID6780689

P50authorSpiros AgathosQ42889294
P2093author name stringA Provost
G Bastin
Y-J Schneider
P2860cites workComputation of elementary modes: a unifying framework and the new binary approachQ24803776
A general definition of metabolic pathways useful for systematic organization and analysis of complex metabolic networksQ28145745
Comparison of network-based pathway analysis methodsQ28274818
Metabolic pathway analysis: basic concepts and scientific applications in the post-genomic era.Q33651317
Plant protein hydrolysates support CHO-320 cells proliferation and recombinant IFN-gamma production in suspension and inside microcarriers in protein-free mediaQ41858917
Dynamic modeling of complex biological systems: a link between metabolic and macroscopic descriptionQ51546938
METATOOL: for studying metabolic networks.Q52216547
P433issue5-6
P304page(s)349-366
P577publication date2006-09-30
P1433published inBioprocess and Biosystems EngineeringQ15765319
P1476titleMetabolic design of macroscopic bioreaction models: application to Chinese hamster ovary cells
P478volume29

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cites work (P2860)
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Q45106163Cybernetic models based on lumped elementary modes accurately predict strain-specific metabolic function
Q27315964DRUM: a new framework for metabolic modeling under non-balanced growth. Application to the carbon metabolism of unicellular microalgae
Q39535172Development of a mathematical model for evaluating the dynamics of normal and apoptotic Chinese hamster ovary cells
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Q35158693Non-stationary 13C metabolic flux analysis of Chinese hamster ovary cells in batch culture using extracellular labeling highlights metabolic reversibility and compartmentation
Q51023424On dynamically generating relevant elementary flux modes in a metabolic network using optimization
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Q37751917Which metabolic pathways generate and characterize the flux space? A comparison among elementary modes, extreme pathways and minimal generators.

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