The effect of ion environment changes on retention protein behavior during whey ultrafiltration process
Влияние изменений ионной среды на поведение белков в ретентате при ультрафильтрации сыворотки
2022-07-16
SCID: 54.1/dfet9rqs
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ion environment changesmembrane foulingprotein depositionwhey protein aggregationwhey ultrafiltration
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Abstract (AI)
The factors affecting membrane fouling are very complex. In this study, the membrane fouling process was revealed from the perspective of ion environment changes, which affected the whey protein structure during ultrafiltration. It was found that the concentrations of Ca2+ and Na+ were overall increased and the concentrations of K+, Mg2+ and Zn2+ were decreased at an ultrafiltration time of 11 min, which made more hydrophilic groups buried inside and increased the content of α-helix, leading to more protein aggregation. The relatively higher K+ ratio in retention could lead to an antiparallel β-sheet configuration, aspartic acid, glutamic acid and tryptophan increased, which resulted in more protein aggregation and deposition on the membrane surface at 17 min. When the ion concentration and ratio restored the balance and were close to the initial state in retention, the protein surface tension decreased, and the hydrophilic ability increased at 21–24 min.
Key Findings
1
At 11 minutes, increased Ca2+ and Na+ and decreased K+, Mg2+, and Zn2+ buried hydrophilic groups, increased α-helix content, and promoted protein aggregation.
2
At 17 minutes, a relatively higher K+ ratio induced antiparallel β-sheet configuration and increases in aspartic acid, glutamic acid, and tryptophan, enhancing protein aggregation and membrane-surface deposition.
3
At 21–24 minutes, restoration of ion concentrations and ratios toward the initial balance decreased protein surface tension and increased protein hydrophilicity.
4
The study links whey ultrafiltration membrane fouling to ion-environment changes that alter whey protein structure.
Research Object
Whey proteins and their retention during ultrafiltration under changing ion environments
Research Subject
Effects of changes in ion concentrations and ratios on whey-protein structure, aggregation, deposition, surface tension, and hydrophilicity during membrane fouling
Publication Details
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2022-07-16
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