蜂花粉
抗氧化剂
食品科学
Zeta电位
溶解度
化学
感官的
多酚
抗菌活性
蜂巢
花粉
磁导率
材料科学
生物
植物
细菌
生物化学
有机化学
纳米技术
遗传学
纳米颗粒
膜
作者
R.Y. Valdivia-Olivares,E.A. Martinez-González,Gloria Montenegro,Raquel Bridi,María Javiera Álvarez-Figueroa,J.V. González-Aramundiz
标识
DOI:10.1016/j.foodres.2023.112767
摘要
Beehive derivatives, including honeybee pollen (HBP), have been extensively studied for their beneficial health properties and potential therapeutic use. Its high polyphenol content gives it excellent antioxidant and antibacterial properties. Today its use is limited due to poor organoleptic properties, low solubility, stability, and permeability under physiological conditions. A novel edible multiple W/O/W nanoemulsion (BP-MNE) to encapsulate the HBP extract was designed and optimized to overcome these limitations. The new BP-MNE has a small size (∼100 nm), a zeta potential greater than +30 mV, and efficiently encapsulated phenolic compounds (∼82%). BP-MNE stability was measured under simulated physiological conditions and storage conditions (4 months); in both cases, stability was promoted. The formulation's antioxidant and antibacterial (Streptococcus pyogenes) activity was analyzed, obtaining a higher effect than the non-encapsulated compounds in both cases. In vitro permeability was tested, observing a high permeability of the phenolic compounds when they are nanoencapsulated. With these results, we propose our BP-MNE as an innovative solution to encapsulate complex matrices, such as HBP extract, as a platform to develop functional foods.
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