4.5 Article

Microencapsulation of Yarrowia lipolytica: cell viability and application in vitro ruminant diets

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SPRINGER
DOI: 10.1007/s11274-023-03534-2

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Microencapsulation; Yarrowia lipolytica; Spray drying; Viable cell count

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Microencapsulation is effective for increasing the survival capacity of Yarrowia lipolytica, and the addition of salts further enhances its microencapsulation efficiency. Different wall materials were tested, and the treatments using maltodextrin (MD) or whey protein concentrate (WPC) with tripolyphosphate (TPP) or sodium erythorbate (SE) showed the highest encapsulation yield. The microencapsulated yeast exhibited high stability during storage and improved release of nutrients in ruminant diets.
Microencapsulation is an alternative to increase the survival capacity of microorganisms, including Yarrowia lipolytica, a widely studied yeast that produces high-value metabolites, such as lipids, aromatic compounds, biomass, lipases, and organic acids. Thus, the present study sought to investigate the effectiveness of different wall materials and the influence of the addition of salts on the microencapsulation of Y. lipolytica, evaluating yield, relationship with cell stability, ability to survive during storage, and in vitro application of ruminant diets. The spray drying process was performed via atomization, testing 11 different compositions using maltodextrin (MD), modified starch (MS) and whey protein concentrate (WPC), Y. lipolytica (Y. lipo) cells, tripolyphosphate (TPP), and sodium erythorbate (SE). The data show a reduction in the water activity value in all treatments. The highest encapsulation yield was found in treatments using MD + TPP + Y. lipo (84.0%) and WPC + TPP + Y. lipo (81.6%). Microencapsulated particles showed a survival rate ranging from 71.61 to 99.83% after 24 h. The treatments WPC + Y. lipo, WPC + SE + Y. lipo, WPC + TPP + Y. lipo, and MD + SE + Y. lipo remained stable for up to 105 days under storage conditions. The treatment WPC + SE + Y. lipo (microencapsulated yeast) was applied in the diet of ruminants due to the greater stability of cell survival. The comparison between the WPC + SE + Y. lipo treatment, wall materials, and the non-microencapsulated yeast showed that the microencapsulated yeast obtained a higher soluble fraction, degradability potential, and release of nutrients.

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