Suppr超能文献

酪蛋白水解物和酵母对小麦面团流变学特性的影响

Influence of Casein Hydrolysates and Yeast on the Rheological Properties of Wheat Dough.

作者信息

Troncoso Recio Ricardo, Pérez Guerra Nelson, Torrado Agrasar Ana, Tovar Rodríguez Clara Asunción

机构信息

Department of Analytical and Food Chemistry, University of Vigo, 32004 Ourense, Spain.

Department of Applied Physics, University of Vigo, 32004 Ourense, Spain.

出版信息

Gels. 2022 Oct 26;8(11):689. doi: 10.3390/gels8110689.

Abstract

The influence of casein hydrolysates (CHs) and yeast on the viscoelasticity of wheat dough at 25 °C were analysed. Three wheat doughs were studied: the unyeasted dough (UYD), the unyeasted dough with CHs (UYD-C) and the yeasted dough (YD). The characteristic parameters in the linear viscoelastic range (LVER) were analysed by stress sweep at 6.3 rad/s: UYD-C dough exhibited higher values of stress () and strain () amplitudes, and softer gel network (lower complex modulus, *) comparing with UYD dough. The oscillatory data suggest that CHs would work as (energy and time) stabilising-agents based on the greatest reticular energy ( parameter) and the lowest frequency dependence of phase angle () at the low frequency range. The rotatory tests show that CHs may act as shear thinning agents in the gluten-starch network, facilitating the solid-fluid transition at the yield point (UYD-C dough). The yeasted dough (YD) exhibited a more shear sensitive structure, evidenced in the highest influence of frequency on the elastic (') and viscous (″) parameters, and gel to sol transition at 0.23 rad/s was observed.

摘要

分析了酪蛋白水解物(CHs)和酵母对25℃下小麦面团粘弹性的影响。研究了三种小麦面团:未添加酵母的面团(UYD)、添加CHs的未发酵面团(UYD-C)和发酵面团(YD)。通过在6.3 rad/s下进行应力扫描分析线性粘弹性范围(LVER)内的特征参数:与UYD面团相比,UYD-C面团表现出更高的应力()和应变()振幅值,以及更软的凝胶网络(更低的复数模量,*)。振荡数据表明,基于最大的网状能量(参数)和低频范围内最低的相角频率依赖性(),CHs可作为(能量和时间)稳定剂。旋转试验表明,CHs在面筋-淀粉网络中可能起到剪切变稀剂的作用,促进屈服点处的固-液转变(UYD-C面团)。发酵面团(YD)表现出更剪切敏感的结构,频率对弹性(')和粘性(″)参数的影响最大,并且在0.23 rad/s处观察到凝胶-溶胶转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bc6/9689493/8c90b0214064/gels-08-00689-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验