The Effect of pH and Heat Pre-Treatments on the Physicochemical and Emulsifying Properties of β-lactoglobulin

被引:0
作者
Ricky S. H. Lam
Michael T. Nickerson
机构
[1] University of Saskatchewan,Department of Food and Bioproduct Sciences
来源
Food Biophysics | 2014年 / 9卷
关键词
Emulsion stability; Beta-lactoglobulin; pH; Interface; Heat; Hydrophobicity;
D O I
暂无
中图分类号
学科分类号
摘要
The overall goal of this research was to investigate structure-function mechanisms associated the emulsifying properties β-lactoglobulin (β-LG). Specifically the physicochemical (i.e., surface charge and hydrophobicity, size and interfacial tension) and emulsifying (i.e., emulsification activity (EAI) and stability indices (ESI)) properties of β-LG were investigated in response to changes in pH (3.0, 5.0 and 7.0) and heat pre-treatment conditions (25, 55 and 85 °C). Hydrophobicity was found to be greatest at pH 5.0/85 °C, whereas at all conditions it was significantly lower. Surface charge on β-LG was found to be neutral at ~ pH 3.9, regardless of conditions. Aggregate size was also found to be highest at pH 5.0/85 °C (avg. hydrodynamic radii of ~714 nm), corresponding to a reduced net surface charge and high hydrophobicity. Little size dependence of aggregates was observed at pH 3.0 regardless to the temperature pre-treatments (radii ~120 nm). In contrast, at pH 7.0 slight temperature dependence was apparent, where treatments at 25, 55 and 85 °C led to radii of 412.8, 307.2 and 232.3 nm, respectively. Overall, the addition of β-LG to a canola oil–water system resulted in a decline in interfacial tension from ~28 mN/m to ~18 mN/m, however the effect of pH/temperature conditions was minimal. EAI was found to be highest when β-LG solutions displayed high surface charge combined with moderate hydrophobicity. In contrast, ESI was higher under conditions where β-LG solutions remained in a native (25 °C) or fully denatured state (85 °C) versus one in where partially unravelling may be occurring (55 °C).
引用
收藏
页码:20 / 28
页数:8
相关论文
共 160 条
[11]  
Denkov ND(2005)undefined Adsorpt Sci Technol 23 777-undefined
[12]  
Ivanov IB(2012)undefined Langmuir 28 2357-undefined
[13]  
Campbell B(2005)undefined Langmuir 21 134-undefined
[14]  
Dalgleish DG(2008)undefined Langmuir 24 2603-undefined
[15]  
Hunt JA(1980)undefined Biochim Biophys Acta 624 13-undefined
[16]  
Dalgleish DG(1978)undefined J. Agri. Food Chem. 26 716-undefined
[17]  
Demetriades K(2000)undefined J. Agri. Food Chem. 48 328-undefined
[18]  
Coupland JN(1997)undefined Biochem J 324 341-undefined
[19]  
McClements DJ(1996)undefined Food Hydrocolloids 10 143-undefined
[20]  
Kulmyrzaev A(2007)undefined Anal Chem 79 3514-undefined