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1.
Food Chem ; 310: 125967, 2020 Apr 25.
Artigo em Inglês | MEDLINE | ID: mdl-31838372

RESUMO

Buffered aqueous solutions of norbixin were stored in light and dark, and analyzed using mass spectrometry. Compounds with both higher and lower masses than norbixin were detected, suggesting the formation of oxidation products and oxidative cleavage products of norbixin. The norbixin oxidation products included compounds containing several oxidations. The amounts of oxidation products of norbixin increased during storage in both light and dark, but in light, the development accelerated. Scavengers of superoxide radical anion (superoxide dismutase), hydrogen peroxide (catalase), hydroxyl radicals (mannitol) and singlet oxygen (sodium azide) and carbon-centered radicals (DMPO) were tested to determine if any of the reactive species were involved in the degradation of norbixin. Of these, only DMPO decreased the bleaching of norbixin indicating the involvement of carbon-centered radicals. Multiple oxidations of norbixin might be a result of a radical chain reaction involving peroxyl and carbon-centered radicals even though not detectable with electron spin resonance.


Assuntos
Carotenoides/metabolismo , Carotenoides/química , Catalase/metabolismo , Escuridão , Espectroscopia de Ressonância de Spin Eletrônica , Armazenamento de Alimentos/métodos , Radicais Livres , Peróxido de Hidrogênio/química , Radical Hidroxila/química , Luz , Oxirredução , Oxigênio Singlete/química , Superóxido Dismutase/metabolismo , Superóxidos/química , Água/química
2.
Food Chem ; 294: 433-439, 2019 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-31126484

RESUMO

We have previously reported how the natural food colorant, bixin, was enzymatically modified by appending sorbitol to the bixin scaffold. The resulted product, sorbitol ester of norbixin (SEN) was expected to be more hydrophilic. The present study aimed to investigate the physical behaviour of SEN in aqueous media. The property of SEN was studied together with non-reacted bixin as separation of the two compounds was unsuccessful. The SEN molecules behaved as a bolaamphiphile in aqueous media, underwent self-association and develop a hydrophilic aggregate. SEN-aggregates could uptake the non-reacted bixin molecules inside its hydrophobic moiety and dispersed it in aqueous media. Aggregation of SEN molecules with incorporated bixin resulted in a hypsochromic shift of the absorption spectra indicting H-aggregation. Dynamic light scattering showed the formation of aggregates with an average hydrodynamic radius 38 ±â€¯2 nm. The dispersibility of the aggregates was affected by pH and the ionic strength of the media.


Assuntos
Carotenoides/química , Corantes de Alimentos/química , Sorbitol/química , Difusão Dinâmica da Luz , Ésteres/química , Furanos , Concentração de Íons de Hidrogênio , Interações Hidrofóbicas e Hidrofílicas , Nanoestruturas/química , Concentração Osmolar , Piridonas , Água/química
3.
Food Chem ; 268: 203-209, 2018 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-30064749

RESUMO

Bixin is one of the most used yellow-orange food colorants in the food industry. The polyene chain of bixin makes it highly hydrophobic and less suitable for water-based food formulations. Lipase-catalyzed reactions of bixin with sorbitol were studied to synthesize a new derivative of bixin with potential hydrophilic properties. Interestingly, we show that the lipase-catalyzed reaction of bixin leads to a transesterification reaction and formation of a transesterified product, sorbitol ester of norbixin (SEN). The reaction efficiency was optimized with various immobilized lipases at different water activity levels in the organic solvent, 2-methyl-2-butanol. Among the examined lipases, immobilized Candida antarctica lipase B (Novozyme 435) provided the highest reaction yield at a water activity close to zero. Tetrahydrofuran (THF) was used as co-solvent to improve bixin solubility. The optimization of the reaction conditions with 20% THF lead to a total reaction yield of 50% of SEN.


Assuntos
Carotenoides/química , Proteínas Fúngicas/química , Lipase/química , Sorbitol/química , Candida , Catálise , Enzimas Imobilizadas , Esterificação , Solventes
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