Laccase cross-linking of sonicated α-Lactalbumin improves physical and oxidative stability of CLA oil in water emulsion

•US pre-treatment has optimally improved functional properties of Lac-cross-linked α-LA.•α-LA was used as a natural emulsifier for CLA emulsion stabilization.•No sign of phase separation was noted throughout the storage studies.•Lac-cross-linked US α-LA emulsion had the highest stability and smalles...

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Veröffentlicht in:Ultrasonics sonochemistry 2021-03, Vol.71, p.105365-105365, Article 105365
Hauptverfasser: Qayum, Abdul, Li, Meng, Shi, Ruijie, Bilawal, Akhunzada, Gantumur, Munkh-Amgalan, Hussain, Muhammad, Ishfaq, Muhammad, Waqas Ali Shah, Syed, Jiang, Zhanmei, Hou, Juncai
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Sprache:eng
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Zusammenfassung:•US pre-treatment has optimally improved functional properties of Lac-cross-linked α-LA.•α-LA was used as a natural emulsifier for CLA emulsion stabilization.•No sign of phase separation was noted throughout the storage studies.•Lac-cross-linked US α-LA emulsion had the highest stability and smallest particle size. α-lactalbumin was modified by ultrasound (US, 20 kHz, 43 ± 3.4 W/cm−2) pre-treatments (0, 15, 30 and 60 min) and laccase cross-linking of sonicated α-lactalbumin was used to evaluate the physical and oxidative stability of conjugated linoleic acid (CLA) emulsions. The emulsions prepared with laccase cross-linking US-α-lactalbumin (α-lactalbumin treated with US pre-treatment) and US-α-lactalbumin were scrutinized for oxidative and physical stability at room temperature for two weeks of storage. Laccase cross-linking US-α-lactalbumin (Lac-US-α-lactalbumin) revealed improved physical stability in comparison with US-α-lactalbumin, specified by droplet size, structural morphology, adsorbed protein, emulsifying properties and creaming index. SDS-PAGE analysis showed that there was formation of polymers in Lac-US-α-lactalbumin emulsion. Surface hydrophobicity of Lac-US-α-lactalbumin was higher than that of US-α-lactalbumin, and gradually enhanced with the increase of ultrasound time. More importantly, the measurements of peroxide values and conjugated dienes were used to study the oxidative stability of the CLA emulsions. The Lac-US-α-lactalbumin emulsion proved to be reducing the synthesis of fatty acid hydroperoxides and less conjugated dienes compared to the native and US-α-lactalbumin emulsions. This study revealed that the combination of US pre-treatment and laccase cross-linking might be an effective technique for the modification of CLA emulsions.
ISSN:1350-4177
1873-2828
DOI:10.1016/j.ultsonch.2020.105365