AcademicArticleSCO_85038854695 uri icon

abstract

  • © 2017 Fractionation of soy proteins has proved to produce protein concentrates with viscoelastic properties. In the present study, a ß-conglycinin concentrate (ßCC) obtained by a pH fractionation of soy flour was tested as structuring agent in gluten-free yeast-leavened bread model. A lean formulation with ßCC and corn starch was used to produce gluten-free breads with two hydration conditions and three levels of protein (5%, 10% and 15%). Vital gluten was used to compare the functionality of ßCC protein and its performance for breadmaking. Breads were characterized in moisture, color, textural parameters and image analysis. ßCC presented lower hydration properties and higher emulsifying activity compared to vital gluten. Blends ßCC:starch had higher water binding capacity compared to vital gluten blends. The hydration conditions tested affected the moisture, color and cell density of breads. Breads produced with ßCC presented higher 2D area and height and presented higher crumb softness and cohesiveness, and did not present significant differences in springiness and resilience compared to vital gluten breads. The image analysis of crumbs showed higher cell density but lower porosity and mean cell areas in ßCC breads. Thus, ßCC proved to have potential as a structuring agent in gluten-free breads.