Surface functional properties of native, acid-treated, and reduced soy glycinin. 1. Foaming properties.

Surface functional properties of native, acid-treated, and reduced soy glycinin. 1. Foaming properties.
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DOI:
10.1021/jf980977b
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发表时间:
1999
影响因子:
6.1
通讯作者:
J. Wagner;J. Gueguen
J. Wagner;J. Gueguen
中科院分区:
农林科学1区
文献类型:
--
作者:
J. Wagner;J. Gueguen

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Foaming properties of native and chemically modified glycinin were evaluated. Effects of ionic strength and glycinin composition and concentration on foam formation and stabilization were studied. Glycinin was modified by means of combined treatments: cold or hot acidic treatments, with or without later disulfide bridges reduction. Modified proteins obtained from glycinin present different degrees of dissociation, deamidation, and as consequence, varied surface hydrophobicity and molecular size. Parameters of forming and stabilizing of foam were correlated with both deamidation and dissociation degrees of modified and native glycinin samples. A positive relationship was observed between surface behavior and foaming properties of different protein species. Results show that dissociation, deamidation, and reduction have produced structural changes on glycinin (increased surface hydrophobicity, increased net charge, decreased molecular size) which enhance the adsorption and anchorage of proteins at the air-water interface and, consequently, improve the foam forming and stabilizing capacities.