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高压下酪蛋白胶束的破坏与重新缔合:乳清成分和酪蛋白胶束浓度的影响

Disruption and reassociation of casein micelles under high pressure: influence of milk serum composition and casein micelle concentration.

作者信息

Huppertz Thom, de Kruif Cornelis G

机构信息

Department of Food and Nutritional Sciences, University College Cork, Ireland.

出版信息

J Agric Food Chem. 2006 Aug 9;54(16):5903-9. doi: 10.1021/jf060689c.

Abstract

In this study, factors influencing the disruption and aggregation of casein micelles during high-pressure (HP) treatment at 250 MPa for 40 min were studied in situ in serum protein-free casein micelle suspensions. In control milk, light transmission increased with treatment time for approximately 15 min, after which a progressive partial reversal of the HP-induced increase in light transmission occurred, indicating initial HP-induced disruption of casein micelles, followed by reformation of casein aggregates from micellar fragments. The extent of HP-induced micellar disruption was negatively correlated with the concentration of casein micelles, milk pH, and levels of added ethanol, calcium chloride, or sodium chloride and positively correlated with the level of added sodium phosphate. The reformation of casein aggregates during prolonged HP treatment did not occur when HP-induced disruption of casein micelles was limited (<60%) or very extensive (>95%) and was promoted by a low initial milk pH or added sodium phosphate, sodium chloride, or ethanol. On the basis of these findings, a mechanism for HP-induced disruption of casein micelles and subsequent aggregation of micellar fragments is proposed, in which the main element appears to be HP-induced solubilization of micellar calcium phosphate.

摘要

在本研究中,我们在无血清蛋白的酪蛋白胶粒悬浮液中,对250兆帕高压处理40分钟过程中影响酪蛋白胶粒分散和聚集的因素进行了原位研究。在对照乳中,透光率随处理时间增加约15分钟,之后高压诱导的透光率增加出现逐渐部分逆转,这表明最初高压诱导酪蛋白胶粒分散,随后胶粒碎片重新形成酪蛋白聚集体。高压诱导的胶粒分散程度与酪蛋白胶粒浓度、乳的pH值以及添加的乙醇、氯化钙或氯化钠水平呈负相关,与添加的磷酸钠水平呈正相关。当高压诱导的酪蛋白胶粒分散有限(<60%)或非常广泛(>95%)时,长时间高压处理过程中酪蛋白聚集体的重新形成不会发生,而低初始乳pH值或添加的磷酸钠、氯化钠或乙醇会促进其形成。基于这些发现,我们提出了一种高压诱导酪蛋白胶粒分散以及随后胶粒碎片聚集的机制,其中主要因素似乎是高压诱导胶粒磷酸钙的溶解。

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