Enzymes in Food Processing: A Condensed Overview on Strategies for Better Biocatalysts

Ферменты в пищевой переработке: сжатый обзор стратегий по созданию более эффективных биокатализаторов
Pedro Fernandes
2010-09-29

enzyme engineeringenzyme immobilizationhigh-throughput screeningprotein expression and microbial cell culturethermal and operational stability
Food and feed is possibly the area where processing anchored in biological agents has the deepest roots. Despite this, process improvement or design and implementation of novel approaches has been consistently performed, and more so in recent years, where significant advances in enzyme engineering and biocatalyst design have fastened the pace of such developments. This paper aims to provide an updated and succinct overview on the applications of enzymes in the food sector, and of progresses made, namely, within the scope of tapping for more efficient biocatalysts, through screening, structural modification, and immobilization of enzymes. Targeted improvements aim at enzymes with enhanced thermal and operational stability, improved specific activity, modification of pH-activity profiles, and increased product specificity, among others. This has been mostly achieved through protein engineering and enzyme immobilization, along with improvements in screening. The latter has been considerably improved due to the implementation of high-throughput techniques, and due to developments in protein expression and microbial cell culture. Expanding screening to relatively unexplored environments (marine, temperature extreme environments) has also contributed to the identification and development of more efficient biocatalysts. Technological aspects are considered, but economic aspects are also briefly addressed.
1
Enzyme engineering and biocatalyst design have accelerated recent advances in food-sector processing improvements.
2
Exploration of underexplored environments (marine and extreme-temperature habitats) has yielded novel enzymes useful for food processing applications.
3
High-throughput screening, improved protein expression, and better microbial cell culture have considerably advanced screening for efficient biocatalysts.
4
Protein engineering and enzyme immobilization are the primary methods used to achieve improved enzyme properties for food processing.
5
Targeted enzyme improvements include enhanced thermal and operational stability, higher specific activity, altered pH-activity profiles, and increased product specificity.
6
The paper considers both technological strategies and briefly addresses economic aspects of implementing improved biocatalysts in food processing.

Enzymes used as biocatalysts in food and feed processing

Strategies to obtain improved biocatalysts for food processing, including screening, protein/structural modification, immobilization, enhanced thermal/operational stability, altered pH-activity profiles, increased specific activity and product specificity, and high-throughput screening/production approaches

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2010-09-29
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Pedro Fernandes
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