Logo do repositório
 
Miniatura indisponível
Publicação

Development and characterization of high-absorption microencapsulated organic propolis EPP-AF® extract (i-CAPs)

Utilize este identificador para referenciar este registo.

Orientador(es)

Resumo(s)

The demand for organic and functional food continues to increase yearly. Among the available functional foods, propolis is a bee product that has various beneficial properties, including antimicrobial, antioxidant, and anti-inflammatory activities. However, it generally is only available in ethanol solution, which has poor bioavailability, as it is relatively insoluble in water. The use of such ethanol extracts is often objectionable because of the alcohol content and because they have a strong and striking taste. Development of alternatives that can efficiently and safely increase solubility in water, and that meet organic production specifications, has been a challenge. To address these concerns, microcapsules were developed using spray-dryer technology from an emulsion based on EPP-AF® propolis and gum arabic (i-CAPS). These propolis-loaded microcapsules were characterized using FT-IR, SEM, TGA, HPLC, and spectrophotometric techniques, along with determination of antimicrobial, antioxidant, antitumor, anti-inflammatory, and antihypercholesterolemic activities, as well as permeability in in vitro models. The production system resulted in microcapsules with a spherical shape and an encapsulation efficiency of 93.7 0.7%. They had IC50s of 2.654 0.062 and 7.342 0.058 g/mL by FRAP and DPPH antioxidant methods, respectively. The EPP-AF® i-CAPS also had superior antimicrobial activity against Gram-positive bacteria. Antitumor activity was calculated based on the concentration that inhibited 50% of growth of AGS, Caco-2, and MCF-7 cell strains, giving results of 154.0 1.0, 117 1.0, and 271.0 25 g/mL, respectively. The microcapsule presentation reduced the permeation of cholesterol by 53.7%, demonstrating antihypercholesterolemic activity, and it improved the permeability of p-coumaric acid and artepillin C. The IC50 for NO production in RAW264.7 cells was 59.0 0.1 g/mL. These findings demonstrate the potential of this new propolis product as a food and pharmaceutical ingredient, though additional studies are recommended to validate the safety of proposed dosages.

Descrição

Palavras-chave

Microencapsulated propolis extract Antitumor Anti-inflammatory Antioxidant Antimicrobial Bioavailability Permeability

Contexto Educativo

Citação

Berretta, Andresa Aparecida; Lima, Jéssica A. de; Falcão, Soraia; Calhelha, Ricardo C.; Amorim, Nathaly Alcazar; Gonçalves, Isabella Salgado; Zamarrenho, Luana Gonçalves; Barud, Hernane da Silva; Bastos, Jairo Kenupp; Jong, David; Vilas-Boas, Miguel (2023). Development and characterization of high-absorption microencapsulated organic propolis EPP-AF® extract (i-CAPs). Molecules. ISSN 1420-3049. 28:20, p. 1-25

Projetos de investigação

Projeto de investigaçãoVer mais
Projeto de investigaçãoVer mais

Unidades organizacionais

Fascículo