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Ultrasonic process affecting interactions between sodium caseinate and whey proteins
Thais Caldas Paiva Moreira1, Rosiane Lopes da Cunha1
1Department of Food Engineering and Technology (DETA), School of Food Engineering, University of Campinas (UNICAMP), Rua Monteiro Lobato, 80, Campinas-SP, CEP 13083-862, Brazil.
Ultrasound treatment modifies whey protein isolate (WPI) aggregation, with sodium caseinate (NaCas) offering a protective effect. Optimized ultrasound conditions, particularly high power and short duration, alter protein structure and enhance gelation properties.
Area of Science:
- Food Science and Technology
- Protein Chemistry
- Ultrasonic Applications
Background:
- Ultrasound is utilized for modifying food materials like proteins.
- Controlling protein aggregation is crucial for food functionality.
Purpose of the Study:
- To investigate the impact of ultrasound on whey protein isolate (WPI) aggregation in the presence of sodium caseinate (NaCas).
- To evaluate how different ultrasound power and time conditions affect protein structure and gelation properties.
Main Methods:
- Solutions of NaCas, WPI, and NaCas:WPI mixtures were subjected to ultrasound under varying power and time parameters.
- Evaluated parameters included particle size distribution, charge density, pH, surface hydrophobicity, circular dichroism, and FTIR spectroscopy.
- Gelation capacity was assessed by measuring stress at rupture and Young's modulus.
Main Results:
- Sodium caseinate (NaCas) demonstrated a protective effect against ultrasound-induced whey protein isolate (WPI) denaturation, indicated by reduced surface hydrophobicity.
- FTIR analysis revealed more ordered protein structures in NaCas:WPI mixtures compared to WPI alone.
- Ultrasound treatment, especially at higher power and shorter times, significantly altered protein structure, leading to reduced stress at rupture and increased Young's modulus, thereby enhancing gelation capacity.
Conclusions:
- Ultrasound conditions, particularly high power and short duration, can effectively modulate protein structure and techno-functional properties.
- NaCas plays a protective role in mitigating WPI denaturation during ultrasound treatment.
- The study highlights the potential for tailoring protein ingredients with specific gelation characteristics through controlled ultrasound application.
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