Sonication as a potential tool in the formation of protein-based stable emulsion – Concise review

•Proteins can be used as emulsifiers due to their amphiphilic nature.•Cavitation events in sonication reduce the droplet size of the emulsion and enhance its stability.•Ultrasound ameliorates the emulsifying characteristics of natural emulsifiers like protein and improves the storage stability of th...

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Veröffentlicht in:Ultrasonics sonochemistry 2024-07, Vol.107, p.106900, Article 106900
Hauptverfasser: Jadhav, Harsh B., Choudhary, Pintu, Gogate, Parag, Ramniwas, Seema, Mugabi, Robert, Ahmad, Zubair, Mohammed Basheeruddin Asdaq, Syed, Ahmad Nayik, Gulzar
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Sprache:eng
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Zusammenfassung:•Proteins can be used as emulsifiers due to their amphiphilic nature.•Cavitation events in sonication reduce the droplet size of the emulsion and enhance its stability.•Ultrasound ameliorates the emulsifying characteristics of natural emulsifiers like protein and improves the storage stability of the emulsion.•The study on sonication-assisted formation of protein-based stable emulsion is still limited. Emulsion systems are extensively used in the food processing sector and the use of natural emulsifiers like proteins for stabilizing emulsion has been in demand from consumers due to increased awareness about the consumption of healthy food. Numerous methods are available for the preparation of emulsion, but ultrasound got more attention among common methods owing to its economical and environment-friendly characteristics. The physical effects caused by to bursting of the cavity bubble, result in reduced droplet size, thus forming an emulsion with appreciable stability. Ultrasound ameliorates the emulsifying characteristics of natural emulsifiers like protein and improves the storage stability of the emulsion by positively boosting the rheological, emulsifying characteristics, improving zeta potential, and reducing average droplet size. The stability of protein-based emulsion is affected by environmental stresses hence conjugate of protein with polysaccharide showed good emulsifying characteristics. However, the data on the effect of ultrasound parameters on emulsifier properties is lacking and there is a need to develop a sonication device that can carry out large-scale emulsification operation. The review covers the principles and mechanisms of ultrasound-assisted formation of protein-based and protein-based conjugate emulsions. Further, the effect of ultrasound on various characteristics of protein-based emulsion is also explored. This review will provide concise data to the researchers to extend their experiments in the area of ultrasound emulsification which will help in commercializing the technology at the industrial scale.
ISSN:1350-4177
1873-2828
1873-2828
DOI:10.1016/j.ultsonch.2024.106900