Effect of the Emulsifier Used in Dunaliella salina-Based Nanoemulsions Formulation on the β-Carotene Absorption and Metabolism in Rats

Mol Nutr Food Res. 2023 Mar;67(6):e2200492. doi: 10.1002/mnfr.202200492. Epub 2023 Feb 3.

Abstract

Scope: Microalgae such as Dunaliella salina are a potential sustainable source of natural β-carotene due to their fast growth and high adaptability to environmental conditions. This work aims to evaluate the effect of the incorporation of β-carotene from this alga into different emulsifier-type nanoemulsions (soybean lecithin [SBL], whey protein isolate [WPI], sodium caseinate [SDC]) on its absorption, metabolization, and biodistribution in rats.

Methods and results: Nanoemulsions formulated with different emulsifiers at 8% concentration are obtained by five cycles of microfluidization at 130 mPa, then expose to an in vitro digestion or orally administer to rats. Feeding rats with nanoemulsions improves β-carotene uptake compared to control suspension, especially using SDC and WPI as emulsifiers. A greater presence of β-carotene and retinol in the intestine, plasma, and liver is observed, being the liver the tissue that shows the highest accumulation. This fact can be a consequence of the smaller droplets that protein-nanoemulsions present compared to that with SBL in the intestine of rats, which promote faster digestibility and higher β-carotene bioaccessibility (35%-50% more) according to the in vitro observations.

Conclusions: Nanoemulsions, especially those formulated with protein emulsifiers, are effective systems for increasing β-carotene absorption, as well as retinol concentration in different rat tissues.

Keywords: Dunaliella salina; bioavailability; microalgae; retinol; β-carotene.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Emulsifying Agents
  • Emulsions
  • Rats
  • Tissue Distribution
  • Vitamin A* / metabolism
  • beta Carotene*

Substances

  • beta Carotene
  • Vitamin A
  • Emulsifying Agents
  • Emulsions