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Alteration of mammalian cell metabolism by dynamic nutrient feeding
Weichang Zhou
, Jutta Rehm
, Anna Europa
,
Wei Shou Hu
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
94
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Scopus citations
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Keyphrases
Mammalian Cells
100%
Nutrient Feeding
100%
Cell Metabolism
100%
Viable Cells
66%
Glutamine
66%
Cell Concentration
66%
Fed-batch Culture
66%
Medium Components
66%
Hybridoma Cells
66%
Salt-free
66%
Feeding Rate
66%
Cell Growth
33%
Ammonia
33%
Amino Acids
33%
Metabolism
33%
Large Fluctuations
33%
Fed-batch
33%
Concentrated Solution
33%
Extended Period
33%
Rate Measurement
33%
Lactate
33%
Metabolic Demand
33%
Ammonium
33%
Batch Culture
33%
Lactate Production
33%
Mammalian Cell Culture
33%
Feeding Strategy
33%
Oxygen Uptake Rate
33%
Online Control
33%
Metabolite Formation
33%
Nutritional Condition
33%
Immunology and Microbiology
Cell Metabolism
100%
Glucose
100%
Fed-Batch Culture
66%
Glutamine
66%
Alanine
66%
Hybridoma
66%
Lactic Acid
66%
Lactate
66%
Cell Culture
33%
Bacterium Culture
33%
Oxygen Consumption
33%
Online Monitoring
33%
Metabolite
33%
Cell Growth
33%
Essential Amino Acid
33%
Agricultural and Biological Sciences
Concentrates
100%
Glucose
100%
Hybridoma
66%
Glutamine
66%
Alanine
66%
Cell Growth
33%
Metabolite
33%
Essential Amino Acid
33%
Cell Culture
33%
Veterinary Science and Veterinary Medicine
Metabolic Pathway
100%
Bacterium Culture
75%
Cell Culture
25%