2021年我国益生菌产业发展十大焦点
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Effect of Super High Pressure Processing on the Structure and Physicochemical Properties of Lactoferrin in Different Buffer Systems
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    摘要:

    近年来,全球科技界与产业界对益生菌具有调节人体健康的作用达成共识,益生菌成为当前备受关注的功能性原配料。为聚焦我国益生菌产业发展中的科学和工程技术等问题,中国食品科学技术学会益生菌分会基于对益生菌产业调研和专家研讨结果,凝练出以益生菌优良菌种资源挖掘,益生菌安全性评价,益生菌菌种培养关键技术,益生菌菌体保护技术,益生菌高活性制备及加工生产装备,益生菌原料质量控制,益生菌精准鉴定与活菌计数,益生菌知识产权保护,益生菌标准、法规及益生菌科普教育十大焦点,为我国益生菌科技与产业的精准对接及产业健康发展提供参考。

    Abstract:

    This paper measured the effect of high pressure processing on the structure and properties of lactoferrin (LF) in different buffer systems [(phosphate buffer (PBS), Tris-HCl buffer (Tris-HCl), citrate buffer (CBS)] by Zeta potential, free sulfhydryl content, ultraviolet spectrum, fluorescence spectrum, circular dichroism and protein solubility. The results showed that the resistance of LF to high pressure in the three buffers was as follows: CBS>Tris-HCl>PBS, that was, the tertiary structure and solubility of LF in PBS were most easily changed by high pressure. The adsorption of anions in the buffer solution caused the isoelectric point of LF to change. The surface Zeta potential of LF in PBS, CBS, and Tris-HCl was -3.86-20.07, -6.89-19.6 mV and 1.24-23.37 mV, respectively. Accordingly, the adsorption capacity of anions was CBS>PBS>Tris-HCl. 600 MPa treatment in Tris-HCl at pH 7 caused a large amount of precipitation of LF, where the free sulfhydryl content reached the highest, 6.23 μmol/(L·g), and the protein solubility was the lowest, 45.28 μg/mL. At pH 3, the α-helix content of LF was significantly lower than other samples, and the content of random coils was significantly higher than other samples, indicating that the secondary structure of LF was relaxed under acidic condition and was more susceptible to high pressure.

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.2021年我国益生菌产业发展十大焦点[J].中国食品学报,2021,21(5):383-388

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  • 在线发布日期: 2021-06-07
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