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Design of aqueous two-phase systems for purification of hyaluronic acid produced by metabolically engineered Lactococcus lactis
Published in Wiley-VCH Verlag
2016
PMID: 26643937
Volume: 39
   
Issue: 4
Pages: 655 - 662
Abstract
Hyaluronic acid has a wide range of biomedical applications and its commercial value is highly dependent on its purity and molecular weight. This study highlights the utility of aqueous two-phase separation as a primary recovery step for hyaluronic acid and for removal of major protein impurities from fermentation broths. Metabolically engineered cultures of a lactate dehydrogenase mutant strain of Lactococcus lactis (L. lactis NZ9020) were used to produce high-molecular-weight hyaluronic acid. The cell-free fermentation broth was partially purified using a polyethylene glycol/potassium phosphate system, resulting in nearly 100% recovery of hyaluronic acid in the salt-rich bottom phase in all the aqueous two-phase separation experiments. These experiments were optimized for maximum removal of protein impurities in the polyethylene glycol rich top phase. The removal of protein impurities resulted in substantial reduction of membrane fouling in the subsequent diafiltration process, carried out with a 300 kDa polyether sulfone membrane. This step resulted in considerable purification of hyaluronic acid, without any loss in recovery and molecular weight. Diafiltration was followed by an adsorption step to remove minor impurities and achieve nearly 100% purity. The final hyaluronic acid product was characterized by Fourier-transform IR and NMR spectroscopy, confirming its purity. © 2015 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
About the journal
JournalData powered by TypesetJournal of Separation Science
PublisherData powered by TypesetWiley-VCH Verlag
ISSN16159306
Open AccessNo
Concepts (63)
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    Fermentation
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    Medical applications
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    Membrane fouling
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    Molecular biology
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    Molecular weight
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    Nuclear magnetic resonance spectroscopy
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    Organic acids
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    Phase separation
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    Polyethylene glycols
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    Polyethylenes
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    Proteins
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    Purification
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    Recovery
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    Removal
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    Solvent extraction
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    AQUEOUS TWO PHASE SYSTEM
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    Biomedical applications
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    CELL FREE FERMENTATION BROTH
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    DIAFILTRATION
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    IR AND NMR SPECTROSCOPY
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    LACTOCOCCUS LACTIS
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    POLYETHER SULFONE MEMBRANES
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    Substantial reduction
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    Hyaluronic acid
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    Adenosine triphosphate
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    Adsorbent
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    Lactate dehydrogenase
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    Macrogol
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    Polyethersulfone
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    POTASSIUM DIHYDROGEN PHOSPHATE
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    Macrogol derivative
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    Phosphate
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    Polymer
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    POTASSIUM DERIVATIVE
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    Protein
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    Sulfone
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    Adsorption
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    Article
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    DIAFILTRATION
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    Infrared spectroscopy
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    LACTOCOCCUS LACTIS
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    Precipitation
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    Priority journal
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    Bioreactor
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    Chemistry
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    Fractionation
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    Genetics
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    LACTOCOCCUS LACTIS
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    Metabolism
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    Mutation
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    Plasmid
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    Procedures
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    Bioreactors
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    CHEMICAL FRACTIONATION
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    L-lactate dehydrogenase
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    LACTOCOCCUS LACTIS
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    Magnetic resonance spectroscopy
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    Phosphates
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    Plasmids
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    Polymers
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    Potassium compounds
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    Spectroscopy, fourier transform infrared
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    Sulfones