4.6 Article

High Internal-Phase Pickering Emulsions Stabilized by Xanthan Gum/Lysozyme Nanoparticles: Rheological and Microstructural Perspective

期刊

FRONTIERS IN NUTRITION
卷 8, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fnut.2021.744234

关键词

xanthan gum; lysozyme; nanoparticles; high internal phase; Pickering emulsion

资金

  1. National Natural Science Foundation of China [U2004160, 31701647]
  2. Natural Science Foundation of Henan province [162300410229]
  3. University Student Scientific Research Projects of Xinyang Normal University [2021-DXS-114]
  4. Nanhu Scholars Program for Young Scholars of XYNU

向作者/读者索取更多资源

In this study, high concentration xanthan gum/lysozyme nanoparticles (XG/Ly NPs) were used as stabilizers for food-grade high internal-phase Pickering emulsions (HIPPEs). The results showed that XG/Ly NPs could stabilize oil droplets within a certain concentration range and impart favorable rheological and structural properties to the emulsion.
Food-grade high internal-phase Pickering emulsions (HIPPEs) stabilized by solid or colloidal particles with different advantages have attracted extensive attention nowadays. However, looking for new appropriate particle stabilizers is the common practice for HIPPEs preparation. It is crucial to find a new strategy for the development of functional HIPPEs with controllable properties. In this study, a high concentration of xanthan gum/lysozyme nanoparticles (XG/Ly NPs) was used for the preparation of HIPPEs for the first time. Visual observations, creaming index (CI), microstructure, and rheology tests were carried out to investigate the potential of XG/Ly NPs as HIPPEs stabilizers. Results indicated that XG/Ly NPs could stabilize oil droplets in the concentration range of 0.5-4% (w/v). The HIPPEs with a minimal particle concentration of 1% exhibited remarkable physical stability. Rheological measurements showed that a high stability of solid-like HIPPEs was successfully obtained with a higher concentration of XG/Ly NPs. Overall, the HIPPEs stabilized by different concentrations of XG/Ly NPs exhibited excellent rheological and structural properties, which might provide a feasible strategy for the development of functional emulsion systems with controllable structures.

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