4.7 Article

Spray-Drying Impact the Physicochemical Properties and Formation of Maillard Reaction Products Contributing to Antioxidant Activity of Camelina Press Cake Extract

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ANTIOXIDANTS
卷 12, 期 4, 页码 -

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MDPI
DOI: 10.3390/antiox12040919

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antioxidant-rich ingredient; spray-drying; Camelina sativa; powdered food; gluten-free ingredient

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The purpose of this study was to examine the influence of spray-drying conditions on the physicochemical and antioxidant properties of powders obtained from Camelina Press Cake Extract. The results indicate that the inlet temperature significantly influenced the solubility, flowability, particle sizes, and Maillard products formation of the powders. This study provides insights into the optimal parameters for CPE spray-drying, which can yield favorable physicochemical and functional values.
Spray-drying is one of the most popular techniques in the food industry for converting liquid material from a fluid state into a form of dried particles to produce encapsulated or instant products. Instant products are considered as convenient foods; moreover, the goal of encapsulation is to close the bioactive compounds in a shell, preventing them from being affected by environmental factors. The purpose of this study was to examine the influence of spray-drying conditions, in particular three inlet temperatures, on the physicochemical and antioxidant properties of powders obtained from Camelina Press Cake Extract (CPE). The CPE was spray-dried at 140 degrees C, 160 degrees C and 180 degrees C. The solubility, Carr and Hausner Indexes, tapped densities and water activity of the powders were analyzed. The structural changes were also detected using FTIR spectroscopy. Additionally, the characteristics of the initial and reconstituted samples and their rheological properties were evaluated. The antioxidant potential, total polyphenols and flavonoids content, free amino acids, and the Maillard reaction products contents in the spray-dried powders were also evaluated. The results indicate a cascade of changes between the initial and reconstituted samples, and important changes in the bioactive potential of samples. The inlet temperature significantly influenced the solubility, flowability and particle sizes of the powders, as well as Maillard products formation. The results of the rheological measurements illustrate the changes after the reconstitution of extracts. This study indicates the optimal parameters of CPE spray-drying, those that yield favorable physicochemical and functional values, which may open up a promising path for CPE valorization, indicating its potential and the possibilities of its use.

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