A1 Refereed original research article in a scientific journal

Encapsulation of betalain into w​/o​/w double emulsion and release during in vitro intestinal lipid digestion




AuthorsKaimainen Mika, Marze Sébastien, Järvenpää Eila, Anton Marc, Huopalahti Rainer

PublisherAcademic Press; Swiss Society of Food Science and Technology

Publication year2015

JournalLWT - Food Science and Technology

Journal name in sourceLWT-FOOD SCIENCE AND TECHNOLOGY

Journal acronymLWT-Food Sci. Technol.

Volume60

Issue2:1

First page 899

Last page904

Number of pages6

ISSN0023-6438

eISSN1096-1127

DOIhttps://doi.org/10.1016/j.lwt.2014.10.016

Self-archived copy’s web addresshttps://research.utu.fi/converis/portal/detail/Publication/1719992


Abstract

A water-in-oil-in-water (w/o/w) double emulsion was prepared with water extract of red beet as the inner water phase, rapeseed oil as the oil phase and polysaccharides solution as the outer water phase. Polyglycerol polyricinoleate and polar lipid fraction from oat were used as emulsifiers for primary water-in-oil (w/o) emulsion and secondary w/o/w emulsion, respectively. Their mean droplet sizes were approximately 0.34 μm and 5.5 μm, respectively. The double emulsion showed a high encapsulation efficiency of 89.1% and had a pink coloration due to encapsulated betalain. The double emulsion was subjected to in vitro intestinal lipid digestion and the evolution of structures and release of betalain were monitored. During the first 2 h of digestion, coalescence of the inner water phase droplets was observed, and the sizes of the double emulsion droplets increased quickly because of aggregation. This period also corresponded to release of betalain, reaching about 35%. After 3 h of digestion, no more release was measured, corresponding to no further increase in droplet sizes. In contrast, the encapsulation efficiency and droplet sizes were not affected after 3 h in the same digestion conditions but without the bile salts and lipase, showing they were responsible for the release.


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