4.7 Article

Development of Oral Delivery Systems with Enhanced Antioxidant and Anticancer Activity: Coix Seed Oil and β-Carotene Coloaded Liposomes

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 67, Issue 1, Pages 406-414

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.8b04879

Keywords

beta-carotene; coix seed oil; liposomes; DPPH; anticancer

Funding

  1. National Natural Science Foundation of China [31560465]
  2. Jiangxi Provincial Natural Science Foundation of China [20161BAB204190]
  3. Jiangxi Provincial Department of Education Youth Project [GJJ150803]
  4. Program of China Scholarship Council [201608360170]

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Fortifying food and beverage products with combinations of bioactive agents is a major initiative within the food industry because of their potentially additive or even synergistic benefits for human health. Coix seed oil (CSO) has been reported to possess anticancer activity, whereas beta-carotene (beta C) is a natural antioxidant that may also exhibit anticancer activity. However, both of these bioactives are insoluble in water and have poor oral bioavailability. The aim of this study was to overcome these obstacles by encapsulating both beta C and CSO into liposomes (L-beta C-CSO). The effect of different combinations of these two bioactive agents on the physiochemical properties, stability, release, antioxidant activity, and anticancer activity of the liposomes was then determined. Increasing the CSO level decreased the beta C entrapment efficiency, increased the particle size, reduced the polydispersity, and raised the magnitude of the surface potential of the bioactive-loaded liposomes. Moreover, the beta C and CSO levels affected their orientation within the lipid bilayer, which also influences the physiochemical properties, stability, and in vitro release behavior of the system. Compared to liposomes containing single bioactive types, the combined systems exhibited higher bioavailability and increased anticancer and antioxidant activity. These results suggest that the combined bioactive-loaded liposomes could be an efficient formulation for potential applications in functional foods and supplements.

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