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Enzyme immobilization in latex dispersion coatings for active food packaging

Nestorson, Anna (författare)
Karlstads universitet,Avdelningen för kemiteknik
Neon, Koon Gee (författare)
National University of Singapore, Dept. of Chemical and Biomolecular Engineering, Singapore
Kang, E.T. (författare)
National University of Singapore, Dept. of Chemical and Biomolecular Engineering, Singapore
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Järnström, Lars, 1954- (författare)
Karlstads universitet,Avdelningen för kemiteknik
Leufven, Anders (författare)
RISE,SIK – Institutet för livsmedel och bioteknik,SIK - The Swedish Institute for Food and Biotechnology, Sweden
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 (creator_code:org_t)
2008
2008
Engelska.
Ingår i: Packaging technology & science. - : Wiley. - 0894-3214 .- 1099-1522. ; 21:4, s. 193-205
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Carboxylated styrene acrylate latex samples have been functionalized by the immobilization and entrapment of the enzyme glucose oxidase (GOx), which can be used as an oxygen scavenger in food packaging. GOx was covalently immobilized both on the surface of already formed films and on the latex particles in dispersion, as well as entrapped within the polymer matrix. In the latter two cases, polymer films were formed after the enzyme had been added to the latex dispersion. The storage stability of the enzyme and the influence of adding clay were also studied. For a given amount of enzyme, the enzyme immobilized on the film surface showed an enzyme activity about 10 times higher than that of the enzyme present within the polymer matrix. This is probably due to the diffusion limitations of the substrate in the polymer matrix. The films with the enzyme present within the polymer matrix, however, showed a higher total oxygen-removal capacity than films with the enzyme immobilized on the surface. Entrapped enzyme showed a slightly higher activity than enzyme immobilized in the dispersion due to the negative effect of the activating chemicals used during the immobilization and on conformational constraints upon covalent bonding. Low amounts of clay added to the dispersion decreased the enzyme activity, but with higher amounts of clay the enzyme activity increased, probably because of the increased porosity and thus higher substrate accessibility. The most suitable storage condition for all the enzyme-containing films was +8°C, which is just above the glass transition temperature of the polymer used.

Ämnesord

LANTBRUKSVETENSKAPER  -- Lantbruksvetenskap, skogsbruk och fiske -- Livsmedelsvetenskap (hsv//swe)
AGRICULTURAL SCIENCES  -- Agriculture, Forestry and Fisheries -- Food Science (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Kemiteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Chemical Engineering (hsv//eng)

Nyckelord

Food Engineering
Livsmedelsteknik
Kemiteknik

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