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  • One of the major barriers to the use of enzymes in industrial biotechnology is their insufficient stability under processing conditions. The use of organic solvent systems instead of aqueous media for enzymatic reactions offers numerous advantages, such as increased solubility of hydrophobic substrates or suppression of water-dependent side reactions. For example, reverse hydrolysis reactions that form esters from acids and alcohols can become thermodynamically favourable in organic solution. However, organic solvents often inactivate enzymes. Industry and academia have devoted considerable effort into developing effective strategies to enhance the lifetime of enzymes in the presence of organic solvents.
  • One of the major barriers to the use of enzymes in industrial biotechnology is their insufficient stability under processing conditions. The use of organic solvent systems instead of aqueous media for enzymatic reactions offers numerous advantages, such as increased solubility of hydrophobic substrates or suppression of water-dependent side reactions. For example, reverse hydrolysis reactions that form esters from acids and alcohols can become thermodynamically favourable in organic solution. However, organic solvents often inactivate enzymes. Industry and academia have devoted considerable effort into developing effective strategies to enhance the lifetime of enzymes in the presence of organic solvents. (en)
Title
  • Strategies for Stabilization and Activation of Biocatalysts in Organic Solvents
  • Strategies for Stabilization and Activation of Biocatalysts in Organic Solvents (en)
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  • Strategies for Stabilization and Activation of Biocatalysts in Organic Solvents
  • Strategies for Stabilization and Activation of Biocatalysts in Organic Solvents (en)
skos:notation
  • RIV/00216224:14310/13:00067016!RIV14-GA0-14310___
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  • P(GAP207/12/0775), P(GAP503/12/0572)
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  • 12
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  • 108149
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  • RIV/00216224:14310/13:00067016
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  • biocatalysis; enzyme stability; organic solvents; chemical modi fi cations; enzyme immobilization; protein engineering (en)
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  • US - Spojené státy americké
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  • [BD79146CDFB0]
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  • ACS Catalysis
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  • 3
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  • Bidmanová, Šárka
  • Chaloupková, Radka
  • Damborský, Jiří
  • Koudeláková, Táňa
  • Prokop, Zbyněk
  • Štěpánková, Veronika
http://linked.open...ain/vavai/riv/wos
  • 000328231400019
issn
  • 2155-5435
number of pages
http://bibframe.org/vocab/doi
  • 10.1021/cs400684x
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  • 14310
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