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Influence of Maltodextrin Type and Multi-layer Formation on the Freeze-Thaw Stability of Model Beverage Emulsions Stabilized with β-Lactoglobulin
- Mun, Saehun;
- McClements, David Julian;
- Surh, Jeonghee
WEB OF SCIENCE
14SCOPUS
14초록
The influences of maltodextrin (MD) addition and multi-layer formation on the freeze-thaw stability of beta-lactoglobulin (beta-Lg)-stabilized oil-in-water beverage emulsions (0.1 wt% corn oil, 0.006 wt% beta-Lg) were investigated. Various beverage emulsions were prepared depending on MD concentration (0-20 wt%), its dextrose equivalent (M150 or M250), and the presence or absence of additional polysaccharides (pectin, alginate, or iota-carrageenan) coatings around the emulsion droplets. All emulsions (beta-Lg- and beta-Lg-polysaccharide-coated emulsions) were unstable to experimental freeze-thaw cycling in the absence of MD. In the presence of MD, all emulsions containing M250 had better stability to droplet aggregation than those with M150, regardless of MD concentrations and freeze-thawing. The optimum concentrations of M250 required to prevent emulsions destabilization under the freeze-thawing were 6, 15, and 2% for beta-Lg-, beta-Lg-iota-carmgeenan-, and beta-Lg-pectin-coated emulsions, respectively. This study implicates practical information to improve freeze-thaw stability of some beverage emulsion products that inevitably go though freezing during processing.
키워드
- 제목
- Influence of Maltodextrin Type and Multi-layer Formation on the Freeze-Thaw Stability of Model Beverage Emulsions Stabilized with β-Lactoglobulin
- 저자
- Mun, Saehun; McClements, David Julian; Surh, Jeonghee
- 발행일
- 2010-02
- 유형
- Article
- 권
- 19
- 호
- 1
- 페이지
- 7 ~ 17