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  4. The Functional and Physicochemical Properties of Rice Protein Concentrate Subjected to Acetylation
 
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The Functional and Physicochemical Properties of Rice Protein Concentrate Subjected to Acetylation

Type
Journal article
Language
English
Date issued
2023
Author
Miedzianka, Joanna
Walkowiak, Katarzyna 
Zielińska-Dawidziak, Magdalena 
Zambrowicz, Aleksandra
Wolny, Szymon
Kita, Agnieszka
Faculty
Wydział Nauk o Żywności i Żywieniu
Journal
Molecules
ISSN
1420-3049
DOI
10.3390/molecules28020770
Web address
https://www.mdpi.com/1420-3049/28/2/770
Volume
28
Number
2
Pages from-to
art. 770
Abstract (EN)
The aim of the present study was to increase the value of rice protein concentrate (RPC) by improving the functional properties of a preparation subjected to acetylation and analyze the impact of this chemical modification on chemical composition, digestibility, and protein patterning using SDS-PAGE electrophoresis and FT-IR spectroscopy. In the modified samples, the protein content increased (80.90–83.10 g/100 g cf. 74.20 g/100 g in the control). Electrophoresis revealed that the content of the main rice protein fractions (prolamin and glutelin) decreased as the concentration of the modifying reagent increased. Through spectroscopic analysis, wavenumbers, corresponding to the presence of proteins or lipids, aromatic systems, and carbohydrates, were observed. The use of acetic anhydride did not change the digestibility of the modified RPC significantly when compared to that of the control sample. The acetylation of the RPC caused a significant increase in its emulsifying properties at pH 8 (1.83–14.74%) and its water-binding capacity but did not have a statistically significant impact on the oil-absorption capacity. There was a slight increase in protein solubility and a decrease in foaming capacity in the modified RPC.
Keywords (EN)
  • commercial rice protein preparat...

  • acetic anhydride

  • amino acid composition

  • digestibility

  • FT-IR spectroscopy

  • functional properties

License
cc-bycc-by CC-BY - Attribution
Open access date
January 12, 2023
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