化学
圆二色性
热稳定性
乳铁蛋白
离子强度
Zeta电位
乳清蛋白
变性(裂变材料)
乳清蛋白
粒径
傅里叶变换红外光谱
生物利用度
浊度
动态光散射
化学工程
色谱法
核化学
结晶学
生物化学
物理化学
有机化学
水溶液
纳米颗粒
工程类
生物信息学
地质学
海洋学
生物
作者
Yufeng Zhou,Tiantian Lin,Younas Dadmohammadi,Peilong Li,Hongmin Dong,Lixin Yang,Yanhong He,G. H. Meletharayil,Rohit Kapoor,Alireza Abbaspourrad
标识
DOI:10.1111/1750-3841.17182
摘要
The poor thermal stability of lactoferrin (LF) hinders its bioavailability and use in commercial food products. To preserve LF from thermal denaturation, complexation with other biopolymers has been studied. Here we present the complex formation conditions, structural stability, and functional protection of LF by α-lactalbumin (α-LA). The formation of the LF-α-LA complexes was dependent on pH, mass ratio, and ionic strength. Changing the formation conditions and cross-linking by transglutaminase impacted the turbidity, particle size, and zeta-potential of the resulting complexes. Electrophoresis, Fourier-transform infrared spectroscopy, and circular dichroism measurements suggest that the secondary structure of LF in the LF-α-LA complex was maintained after complexation and subsequent thermal treatments. At pH 7, the LF-α-LA complex protected LF from thermal aggregation and denaturation, and the LF retained its functional and structural properties, including antibacterial capacity of LF after thermal treatments. The improved thermal stability and functional properties of LF in the LF-α-LA complex are of interest to the food industry.
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