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Pea Protein for Hempseed Oil Nanoemulsion Stabilization.

Maciej JarzębskiFarahnaz FathordoobadyYigong GuoMinghuan XuAnika SinghDavid D KittsPrzemysław Łukasz KowalczewskiPaweł JeżowskiAnubhav Pratap-Singh
Published in: Molecules (Basel, Switzerland) (2019)
In this paper, we present the possibility of using pea protein isolates as a stabilizer for hempseed oil (HSO)-based water/oil emulsions in conjunction with lecithin as a co-surfactant. A Box-Behnken design was employed to build polynomial models for optimization of the ultrasonication process to prepare the emulsions. The stability of the system was verified by droplet size measurements using dynamic light scattering (DLS) as well as centrifugation and thermal challenge tests. The z-ave droplet diameters of optimized emulsion were 209 and 207 nm after preparation and 1 week storage, respectively. The concentration of free Linoleic acid (C18:2; n-6) was used for calculation of entrapment efficiency in prepared nanoemulsions. At optimum conditions of the process, up to 98.63% ± 1.95 of entrapment was achieved. FTIR analysis and rheological tests were also performed to evaluate the quality of oil and emulsion, and to verify the close-to-water like behavior of the prepared samples compared to the viscous nature of the original oil. Obtained results confirmed the high impact of lecithin and pea protein concentrations on the emulsion droplet size and homogeneity confirmed by microscopic imaging. The presented results are the first steps towards using hempseed oil-based emulsions as a potential food additive carrier, such as flavor. Furthermore, the good stability of the prepared nanoemulsion gives opportunities for potential use in biomedical and cosmetic applications.
Keyphrases
  • fatty acid
  • high throughput
  • binding protein
  • protein protein
  • transcription factor
  • clinical trial
  • randomized controlled trial
  • small molecule
  • simultaneous determination