| Literature DB >> 26364107 |
Xianchao Feng1, Chenyi Li1, Niamat Ullah1, Jiqianrui Cao1, Yongli Lan1, Wupeng Ge1, Robert M Hackman2, Zhixi Li1, Lin Chen3.
Abstract
Oxidation is an important factor for denaturing of whey protein isolate (WPI) during food processing. We studied the effects of chemical oxidation on physicochemical and structural changes along with in vitro digestibility of WPI in this work. Evaluation of physicochemical changes showed that carbonyl level and dityrosine content increased, whereas total and free thiol group levels decreased for oxidized WPI samples. For the structural changes, protein aggregation was measured by surface hydrophobicity, turbidity, and particle diameter, which was increased for oxidized WPI samples. The increase of the secondary structure β-sheets and antiparallel β-sheet also supported the aggregation of oxidized WPI. A direct quantitative relationship between physicochemical and structural changes and protein digestibility indicated that oxidation-related damage restricts the susceptibility of WPI to proteases. In conclusion, WPI had high susceptibility to oxidative stress, and both physicochemical and structural changes caused by severe oxidative stress could decrease the rate of in vitro digestibility of WPI.Entities:
Keywords: aggregation; in vitro digestion; physicochemical changes; structural changes; whey protein isolates
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Year: 2015 PMID: 26364107 DOI: 10.3168/jds.2015-9814
Source DB: PubMed Journal: J Dairy Sci ISSN: 0022-0302 Impact factor: 4.034