Plant oil bioconversion into increase biological activity through lipases derived from wastes

Summary The aim of this study was to show that abundant and inexpensive plant oils can be biotransformed to increase biological activity (antioxidant, antimicrobial and cytotoxicity) through hydrolysis reaction catalysed by lipases. We tested homemade and commercial lipases through the biotransforma...

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Veröffentlicht in:International journal of food science & technology 2019-04, Vol.54 (4), p.1089-1099
Hauptverfasser: Francisco, Valesca Cristiane Benelli, Okino‐Delgado, Clarissa Hamaio, Zanutto Elgui, Mirella R., Fernandes, Célio Junior da Costa, Facanali, Roselaine, Silva, Rodrigo Augusto, Zambuzzi, Willian Fernando, Marques, Márcia Ortiz Mayo, Fleuri, Luciana Francisco
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Sprache:eng
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Zusammenfassung:Summary The aim of this study was to show that abundant and inexpensive plant oils can be biotransformed to increase biological activity (antioxidant, antimicrobial and cytotoxicity) through hydrolysis reaction catalysed by lipases. We tested homemade and commercial lipases through the biotransformation of nine different plant oils in forty different combinations. First, the chemical composition of the samples was investigated. Thereafter, biological tests were conducted to assess the antioxidant and antimicrobial activity of the sampled biotransformation products, as well as analyzed their influence on the viability of healthy and cancer cells. Summarising, sunflower, corn and olive oils modified by orange waste‐obtained lipases presented the most promising results, reaching up to 90% of antioxidant activity increase and significant growth inhibition of bacteria colonies belonging to genera Escherichia, Listeria, Staphylococcus, Pseudomonas and Salmonella. In addition, those compounds affected human oral squamous carcinoma cells. The bioconversion of plant oils through lipases improves their biological properties and might be an option for biotechnological application. Application of orange lipases for plant oil biotransformation to increase biological activities.
ISSN:0950-5423
1365-2621
DOI:10.1111/ijfs.13949