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豆浆超高温处理过程中的异黄酮谱及动力学变化

Isoflavone Profiles and Kinetic Changes during Ultra-High Temperature Processing of Soymilk.

作者信息

Zhang Yan, Chang Sam K C

机构信息

Dept. of Food Science, Nutrition and Health Promotion, Mississippi State Univ, Starkville, MS, 39761, U.S.A.

出版信息

J Food Sci. 2016 Mar;81(3):C593-9. doi: 10.1111/1750-3841.13236. Epub 2016 Jan 27.

Abstract

Isoflavone profile is greatly affected by heating process. However, kinetic analyses of isoflavone conversion and degradation using a continuous industry processing method have never been characterized. In this study, Proto soybean was soaked and blanched at 80 °C for 2 min and then processed into soymilk, which underwent UHT (ultra-high temperature) at 135 to 150 °C for 10 to 50 s with a pilot plant-scale Microthermics processor. The isoflavone profile was determined at different time/temperature combinations. The results showed that all isoflavone forms exhibited distinct changing patterns over time. In the soymilk under UHT conditions, the degradation (disappearance) of malonyldaizin and malonylgenistin exhibited first-order kinetics with activation energies of 59 and 84 kj/mole, respectively. At all UHT temperatures, malonylgenistin showed higher rate constants than malonyldaidzin. However, malonylglycitin changed irregularly under these UHT temperatures. The increase of genistin, daidzin, glycitein and acetlydaidzin during heating demonstrated zero-order kinetics and the rate constants increased with temperature except for the conditions of 145 to 150 °C for 50 s. Overall, genistein series exhibited higher stability than daidzein series. Under all UHT conditions, total isoflavone decreased from 12% to 24%.

摘要

异黄酮谱受加热过程的影响很大。然而,使用连续工业加工方法对异黄酮转化和降解进行的动力学分析从未有过描述。在本研究中,将原始大豆在80℃下浸泡和热烫2分钟,然后加工成豆浆,使用中试规模的Microthermics处理器在135至150℃下对豆浆进行10至50秒的超高温(UHT)处理。在不同的时间/温度组合下测定异黄酮谱。结果表明,所有异黄酮形式随时间呈现出明显的变化模式。在超高温条件下的豆浆中,丙二酰黄豆苷元和丙二酰染料木苷元的降解(消失)呈现一级动力学,活化能分别为59和84千焦/摩尔。在所有超高温温度下,丙二酰染料木苷元的速率常数均高于丙二酰黄豆苷元。然而,在这些超高温温度下,丙二酰大豆黄素变化不规则。加热过程中染料木苷、黄豆苷、大豆黄素和乙酰黄豆苷的增加呈现零级动力学,除了在145至150℃下处理50秒的条件外,速率常数随温度升高而增加。总体而言,染料木黄酮系列比黄豆苷元系列表现出更高的稳定性。在所有超高温条件下,总异黄酮减少了12%至24%。

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