Artículo
Design of stable metabolic networks
Di Maggio, Jimena Andrea
; Blanco, Anibal Manuel
; Bandoni, Jose Alberto
; Diaz Ricci, Juan Carlos
; Díaz, María Soledad
Fecha de publicación:
08/2017
Editorial:
Wiley VCH Verlag
Revista:
Engineering In Life Sciences
ISSN:
1618-0240
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this work, we propose eigenvalue optimization combined with Lyapunov theory concepts to ensure stability of the Embden—Meyerhof–Parnas pathway, the pentosephosphate pathway, the phosphotransferase system and fermentation reactions of Escherichia coli. We address the design of a metabolic network for the maximization of different metabolite production rates. The first case study focuses on serine production, based on a model that consists of 18 differential equations corresponding to dynamic mass balances for extracellular glucose and intracellular metabolites, and thirty kinetic rate expressions. A second case study addresses the design problem to maximize ethanol production, based on a dynamic model that involves mass balancesfor 25 metabolites and 38 kinetic rate equations. The nonlinear optimization problem including stability constraints has been solved with reduced space Successive Quadratic Programming techniques. Numerical results provide useful insights on the stability properties of the studied kinetic models.
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Articulos(INSIBIO)
Articulos de INST.SUP.DE INVEST.BIOLOGICAS
Articulos de INST.SUP.DE INVEST.BIOLOGICAS
Articulos(PLAPIQUI)
Articulos de PLANTA PILOTO DE INGENIERIA QUIMICA (I)
Articulos de PLANTA PILOTO DE INGENIERIA QUIMICA (I)
Citación
Di Maggio, Jimena Andrea; Blanco, Anibal Manuel; Bandoni, Jose Alberto; Diaz Ricci, Juan Carlos; Díaz, María Soledad; Design of stable metabolic networks; Wiley VCH Verlag; Engineering In Life Sciences; 17; 8; 8-2017; 908-915
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