Formulation and stability assessment of ergocalciferol loaded oil-in-water nanoemulsions: Insights of emulsifiers effect on stabilization mechanism

dc.contributor.authorShu, Gaofeng
dc.contributor.authorkhalid, Nauman
dc.contributor.authorZhao, Yiguo
dc.contributor.authorNeves, Marcos A
dc.contributor.authorETAL..
dc.date.accessioned2023-04-11T07:57:42Z
dc.date.accessioned2023-08-19T08:07:29Z
dc.date.available2023-04-11T07:57:42Z
dc.date.available2023-08-19T08:07:29Z
dc.date.issued2016-12
dc.descriptionThe emulsion produced by ML was found to be stable to droplet aggregation at heating temperatures (80–120 °C) for 1 h. All the O/W emulsions stored at 25 °C showed good physical and chemical stability. However, the chemical stability of ergocalciferol in emulsion system decreased in order of ML > MO-7S ≫ SC during storage at 55 °C for a period of 30 days. These findings provide valuable information for the development of nanoemulsion-based delivery system applied in food and beverage products.en_US
dc.description.abstractIn the study, we investigated the effect of emulsifiers with different stabilizing mechanisms on the formulation and stability of ergocalciferol loaded oil-in-water (O/W) emulsions. O/W emulsion stabilized by modified lecithin (ML; electrostatic stabilization), sodium caseinate (SC; electrosteric stabilization) or decaglycerol monooleate (MO-7S; steric stabilization) were formulated using high-pressure homogenization. The Sauter mean diameter (d3,2) of emulsions produced by ML, SC and MO-7S were 126 ± 1, 127 ± 4 and 138 ± 3 nm, respectively. The stability of resulting emulsions was evaluated when they exposed to different environmental stresses and during 30 days of storage at 25 and 55 °C. Results showed that the emulsions prepared by MO-7S or ML were stable against a wide range of pH (2–8), while SC-stabilized emulsions showed instability with extensive droplet aggregation at pH 4 or and 5. Only ML-stabilized emulsions showed droplet growth due to coalescence when treated at high NaCl concentration (300–500 mM). In the absence of glucose, SC-stabilized O/W emulsions showed better freeze-thaw stability, in comparison to those formed with ML or MO-7S emulsifiers. The emulsion produced by ML was found to be stable to droplet aggregation at heating temperatures (80–120 °C) for 1 h. All the O/W emulsions stored at 25 °C showed good physical and chemical stability. However, the chemical stability of ergocalciferol in emulsion system decreased in order of ML > MO-7S ≫ SC during storage at 55 °C for a period of 30 days. These findings provide valuable information for the development of nanoemulsion-based delivery system applied in food and beverage products.en_US
dc.identifier.citationShu, G., Khalid, N., Zhao, Y., Neves, M. A., Kobayashi, I., & Nakajima, M. (2016). Formulation and stability assessment of ergocalciferol loaded oil-in-water nanoemulsions: Insights of emulsifiers effect on stabilization mechanism. Food research international, 90, 320-327.en_US
dc.identifier.doihttps://doi.org/10.1016/j.foodres.2016.10.021
dc.identifier.urihttps://edms.wexl.in/handle/1/4507
dc.language.isoenen_US
dc.publisherElsevieren_US
dc.subjectErgocalciferolen_US
dc.subjectNanoemulsionsen_US
dc.subjectFreeze-thaw treatmenten_US
dc.subjectIonic strengthen_US
dc.subjectTemperatureen_US
dc.titleFormulation and stability assessment of ergocalciferol loaded oil-in-water nanoemulsions: Insights of emulsifiers effect on stabilization mechanismen_US
dc.title.alternativeJournal Articleen_US
dc.typeArticleen_US

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