4.7 Article

Effect of chitosan oligosaccharide glycosylation on the emulsifying property of lactoferrin

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出版社

ELSEVIER
DOI: 10.1016/j.ijbiomac.2022.03.169

关键词

Lactoferrin; Glycosylation; Chitosan oligosaccharide; Emulsifying property

资金

  1. National Natural Science Foundation of China [31972022]
  2. Guangdong Basic and AppliedBasic Research Foundation [2019A1515011996]
  3. National Natural Sci-ence Foundation of China [32001647]
  4. 111 Project [B17018]

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This study investigated the effect of glycation with chitosan oligosaccharide (COS) on the emulsifying properties of lactoferrin (LF). The results showed that glycation with COS led to smaller droplet size and increased stability of LF-stabilized emulsions. Additionally, glycation enhanced the interfacial activity of LF.
There is fast increasing interest in the development of alimentary protein stabilized emulsions due to their po-tential applications in functional food fields. This work studied the effect of glycation degree with chitosan oligosaccharide (COS) on the emulsifying properties of lactoferrin (LF) through Maillard reaction. In the present study, SDS-PAGE and FT-IR were used to confirm LF and COS covalently binding together successfully. Intrinsic fluorescence showed that glycation with COS led more hydrophobic groups exposed to the surface of the structure and particle size increase of LF. Emulsions with 50% (v/v) oil phase and protein concentration of 2% (w/v) was fabricated through one-step shear method. Compared with native LF, emulsions stabilized by LF-COS conjugates showed smaller droplet size and lower creaming index (CI). Among these samples, LF-COS conjugates under 4 h had the best emulsifying efficiency and stability, the emulsion droplet size and the CI of which decreased 39.66% and 28.55% compared with LF, respectively. Furthermore, glycation with COS enhanced the interfacial activity of LF leading to more adsorbing amount and forming thicker layer on the droplets and gel network in the emulsions. This finding would make sense to further understand the modification of emulsifying properties of alimentary proteins through glycosylation with saccharides and develop novel protein-based emulsifiers.

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