Analytical validation of an ultraviolet–visible procedure for determining vitamin D3 in vitamin D3-loaded microparticles and toxigenetic studies for incorporation into food

Vitamin D is a water-insoluble compound presented in two main forms (D2 and D3), susceptible to environmental conditions. Microencapsulation is an alternative to supplements and preserve vitamin D properties in foods. Entrapment efficiency (EE) is the main property to evaluate the encapsulation effe...

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Detalhes bibliográficos
Autor principal: Silva, Tamires Barlati Vieira da (author)
Outros Autores: Oliveira, Anielle de (author), Moreira, Thaysa Fernandes Moya (author), Silva, Kelly Cristina da (author), Zanin, Rodolfo Campos (author), Bona, Evandro (author), Gonçalves, Odinei Hess (author), Shirai, Marianne Ayumi (author), Peron, Ana Paula (author), Leimann, Fernanda Vitória (author)
Formato: article
Idioma:eng
Publicado em: 2018
Assuntos:
Texto completo:http://hdl.handle.net/10198/24259
País:Portugal
Oai:oai:bibliotecadigital.ipb.pt:10198/24259
Descrição
Resumo:Vitamin D is a water-insoluble compound presented in two main forms (D2 and D3), susceptible to environmental conditions. Microencapsulation is an alternative to supplements and preserve vitamin D properties in foods. Entrapment efficiency (EE) is the main property to evaluate the encapsulation effectiveness and therefore it is of interest the study of analytical methods for the identification and quantification of this compound within the particle. This paper describes a low cost UV–Vis methodology validation to the identification and quantification of vitamin D3 in microparticles produced by hot homogenization. The method was validated following the International Conference on Harmonization (ICH) guidelines. To guarantee safe application in foodstuff, microparticles toxigenicity was evaluated with Allium cepa L. in vivo model, showing no cytotoxic nor genotoxic potential. High entrapment efficiency was obtained, the results also demonstrated that the concentration of vitamin D3 in microparticles can be safely accessed by the validated method.