2002WORLD SCIENTIFIC eBooksRequires access

An Introduction to Metabolic and Cellular Engineering

Sonia Cortassa, Miguel A. Aon, A A Iglesias, David Lloyd

Open publisher page 30 citations

Abstract

Metabolic and Cellular Engineering in the Context of Bioprocess Engineering Systems Biology and the Complex Systems Approach Networks in Systems Biology Black and Grey Boxes: Levels of Description of Metabolic Behavior in Microorganisms Matter and Energy Balances Mass Balance as the Basis of Metabolic Flux Analysis Microbial Growth Under Steady and Conditions Metabolic Fluxes During Balanced and Steady State Growth Toward a Rational Design of Cells Metabolic Design of Cells as Catalysts Stoichiometry of Growth: the Equivalence Between Biochemical Stoichiometries and Physiological Parameters Metabolic Flux Analysis Applications The Transdisciplinary Approach as Applied to the Rational Design of Microorganisms Modeling Networks: Concepts and Tools Kinetic Modeling in Microbial Physiology and Energetics Metabolic Control Analysis of Networks Analysis and Detection of Complex Nonlinear Behavior in Networks Complex Qualitative Behavior in Networks Dynamic Aspects of Bioprocess Behavior Oscillatory Phenomena in Continuous Cultures Bioprocess Development with Plant Cells Plant Metabolism Carbon Assimilation, Partitioning, and Allocation in Higher Plants Cell Culture Techniques Metabolic and Cellular Engineering in the Industrial Production of Therapeutic Proteins Biological Complexity and Systems Bioengineering.

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Metabolic and Cellular Engineering in the Context of Bioprocess Engineering Systems Biology and the Complex Systems Approach Networks in Systems Biology Black and Grey Boxes: Levels of Description of Metabolic Behavior in Microorganisms Matter and Energy Balances Mass Balance as the Basis of Metabolic Flux Analysis Microbial Growth Under Steady and Conditions Metabolic Fluxes During Balanced and Steady State Growth Toward a Rational Design of Cells Metabolic Design of Cells as Catalysts Stoichiometry of Growth: the Equivalence Between Biochemical Stoichiometries and Physiological Parameters Metabolic Flux Analysis Applications The Transdisciplinary Approach as Applied to the Rational Design of Microorganisms Modeling Networks: Concepts and Tools Kinetic Modeling in Microbial Physiology and Energetics Metabolic Control Analysis of Networks Analysis and Detection of Complex Nonlinear Behavior in Networks Complex Qualitative Behavior in Networks Dynamic Aspects of Bioprocess Behavior Oscillatory Phenomena in Continuous Cultures Bioprocess Development with Plant Cells Plant Metabolism Carbon Assimilation, Partitioning, and Allocation in Higher Plants Cell Culture Techniques Metabolic and Cellular Engineering in the Industrial Production of Therapeutic Proteins Biological Complexity and Systems Bioengineering.

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Available abstract

Metabolic and Cellular Engineering in the Context of Bioprocess Engineering Systems Biology and the Complex Systems Approach Networks in Systems Biology Black and Grey Boxes: Levels of Description of Metabolic Behavior in Microorganisms Matter and Energy Balances Mass Balance as the Basis of Metabolic Flux Analysis Microbial Growth Under Steady and Conditions Metabolic Fluxes During Balanced and Steady State Growth Toward a Rational Design of Cells Metabolic Design of Cells as Catalysts Stoichiometry of Growth: the Equivalence Between Biochemical Stoichiometries and Physiological Parameters Metabolic Flux Analysis Applications The Transdisciplinary Approach as Applied to the Rational Design of Microorganisms Modeling Networks: Concepts and Tools Kinetic Modeling in Microbial Physiology and Energetics Metabolic Control Analysis of Networks Analysis and Detection of Complex Nonlinear Behavior in Networks Complex Qualitative Behavior in Networks Dynamic Aspects of Bioprocess Behavior Oscillatory Phenomena in Continuous Cultures Bioprocess Development with Plant Cells Plant Metabolism Carbon Assimilation, Partitioning, and Allocation in Higher Plants Cell Culture Techniques Metabolic and Cellular Engineering in the Industrial Production of Therapeutic Proteins Biological Complexity and Systems Bioengineering.

Key concepts: Metabolic engineering, Computer science, Biology, Biochemistry, Enzyme

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