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中国精品科技期刊2020

乙醇-水体系制备乳清分离蛋白-葡萄糖美拉德反应产物的工艺优化及产物性能研究

Optimization of Process Parameters and Study of Product Properties for the Maillard Reaction between Whey Protein Isolate and Glucose in an Ethanol-Water System

  • 摘要: 针对传统的干热法反应周期长,湿热法易导致蛋白质过度变性等问题,建立一种在乙醇-水体系中进行乳清分离蛋白-葡萄糖美拉德反应的新方法,实现产物的高效可控制备。本研究以接枝度为指标,通过单因素实验及响应面法优化反应条件,并对产物的溶解性、乳化性及抗氧化性等性能进行表征。结果表明,最佳制备工艺为乙醇水体积浓度90%、乙醇水体积3 mL、乳清分离蛋白-葡萄糖质量比1:2、反应时间3 h、反应温度70 ℃。在此条件下的接枝物,接枝度为80.74%±1.61%,且系统表征显示其性能得到优化:在反应温度不高于70 ℃条件下褐变程度低、色差变化小,在整个实验pH2.0~10.0范围,浊度很低且无显著变化(P>0.05)且溶解性优异(>85.60%±1.20%),乳化活性、乳化稳定性、DPPH和ABTS+自由基清除率分别达到:57.29±1.01 m2/g、22.58±0.52 min、32.19%±2.31%和59.65%±1.96%。本研究证实了乙醇-水体系可高效制备乳清分离蛋白-葡萄糖美拉德反应产物,通过调控反应时间可定向优化其溶解性、乳化性及抗氧化性等性能,为其在食品加工中的应用提供了理论依据。

     

    Abstract: To address the inherent limitations of conventional dry-heating methods (protracted reaction duration) and wet-heating approaches (excessive protein denaturation), an innovative strategy was developed for effectuating the Maillard reaction between whey protein isolate (WPI) and glucose within an ethanol-water binary system, thereby enabling efficient and precisely controlled preparation of glycoconjugates. Utilizing the degree of graft (DG) as the primary response variable, reaction parameters were systematically optimized through single-factor experimentation coupled with Box-Behnken design-based response surface methodology. The resultant conjugates were comprehensively characterized with respect to solubility profile, emulsifying properties, and antioxidant capacity. Optimal conditions were established as follows: ethanol-water volume concentration of 90%, ethanol-water volume of 3 mL, WPI-to-glucose mass ratio of 1:2, reaction duration of 3 h, and temperature of 70 ℃. Under these optimized parameters, the conjugates exhibited a DG of 80.74%±1.61%. Comprehensive physicochemical characterization revealed markedly enhanced functional attributes. Minimal browning intensity and negligible chromatic aberration were observed at reaction temperatures ≤70 ℃. Across the investigated pH range (2.0~10.0), the conjugates demonstrated exceptionally low turbidity without statistically significant variation (P>0.05), concomitant with superior solubility (>85.60%±1.20%). Furthermore, the emulsification activity index, emulsion stability index, DPPH radical scavenging activity, and ABTS+ radical scavenging activity attained values of 57.29±1.01 m2/g, 22.58±0.52 min, 32.19%±2.31%, and 59.65%±1.96%, respectively. These findings conclusively demonstrate that the ethanol-water system constitutes an efficient reaction medium for generating WPI-glucose Maillard reaction products. Moreover, judicious modulation of reaction time enables targeted optimization of solubility, emulsifying properties, and antioxidant activity, thereby establishing a theoretical foundation for potential applications within food processing systems.

     

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