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Denaturation and physical characteristics of spray-dried whey protein isolate powders produced in the presence and absence of lactose, trehalose, and polysorbate-80

journal contribution
posted on 2024-11-01, 22:40 authored by MD Amdadul Haque, Jie Chen, Peter Aldred, Benu AdhikariBenu Adhikari
The denaturation (loss of protein through aggregation and/or change in secondary structure) and physical characteristics such as powder morphology, particle size and size distribution, amorphous/crystalline behavior, and solubility of whey protein isolate (WPI) were investigated in a spray-drying process. The protective efficacy of sugars (lactose and trehalose) and low-molecular-weight surfactant polysorbate-80 (Tween-80) on the secondary structure (β-turn, β-sheet and α-helix) and physical characteristics of spray-dried WPI was quantified. The WPI, WPI+sugar, and WPI+Tween-80 formulations were spray dried maintaining the total solids at 10% (w/w). The inlet and outlet temperatures were maintained at 180 and 80°C, respectively. The results showed that the loss of protein through denaturation and aggregation was not significant (p > 0.05). However, a significant (p < 0.05) alteration of the secondary structural elements was observed. Due to spray drying of WPI without protectants, the β-sheet and β-turn were decreased by 4.4 and 14.5%, respectively, and the random coil increased by 20.7%. The α-helix of WPI remained unaltered during the spray-drying process. The presence of Tween-80 effectively protected the α-helix and β-sheet but the β-turn remained vulnerable and was decreased. No significant (p > 0.05) change in the solubility of WPI was observed due to spray drying. Spray drying of WPI+sugar produced essentially amorphous particles. The dried powder particles were spherical with wrinkled or folded surface.

History

Journal

Drying Technology

Volume

33

Start page

1243

End page

1254

Total pages

12

Publisher

Taylor and Francis Inc.

Place published

United States

Language

English

Copyright

Copyright © 2015 Taylor and Francis Group, LLC

Former Identifier

2006056350

Esploro creation date

2020-06-22

Fedora creation date

2015-11-25

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