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中国精品科技期刊2020
刘鑫源,徐睿绮,张蕊,等. 白扁豆多肽制备工艺优化及其功能特性研究J. 食品工业科技,2026,47(19):1−12. doi: 10.13386/j.issn1002-0306.2025090238.
引用本文: 刘鑫源,徐睿绮,张蕊,等. 白扁豆多肽制备工艺优化及其功能特性研究J. 食品工业科技,2026,47(19):1−12. doi: 10.13386/j.issn1002-0306.2025090238.
LIU Xinyuan, XU Ruiqi, ZHANG Rui, et al. Optimization of Enzymatic Hydrolysis Technology, and Functional Properties of white lentils PeptidesJ. Science and Technology of Food Industry, 2026, 47(19): 1−12. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025090238.
Citation: LIU Xinyuan, XU Ruiqi, ZHANG Rui, et al. Optimization of Enzymatic Hydrolysis Technology, and Functional Properties of white lentils PeptidesJ. Science and Technology of Food Industry, 2026, 47(19): 1−12. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025090238.

白扁豆多肽制备工艺优化及其功能特性研究

Optimization of Enzymatic Hydrolysis Technology, and Functional Properties of white lentils Peptides

  • 摘要: 本文旨在优化白扁豆的酶解工艺,以制备具有高抗氧化活性和良好功能特性的白扁豆多肽,为实现白扁豆的高值化利用提供新途径,从而推动白扁豆多肽在功能性食品、医药制剂和天然防腐剂等领域的创新应用。以碱提酸沉提取白扁豆蛋白为原料,通过比较不同蛋白酶水解效果(胰蛋白酶、碱性蛋白酶、中性蛋白酶、木瓜蛋白酶),以水解度为指标,筛选出最佳蛋白酶,并通过单因素及Box-Behnken响应面法对酶解条件进行优化。进一步研究白扁豆多肽功能特性。结果表明,制备白扁豆多肽最佳蛋白酶为碱性蛋白酶,其水解度达到22.09%±0.75%,最佳酶解工艺条件为温度55 ℃、pH9.0、加酶量4239 U/g、底物浓度11%,在此条件下水解度达23.48%±0.04%。抗氧化活性测定显示,白扁豆多肽DPPH自由基清除率IC50为1.28 mg/mL,ABTS+自由基清除率IC50为2.07 mg/mL,羟基自由基清除率IC50为0.30 mg/mL,超氧阴离子自由基清除率IC50为3.24 mg/mL,总还原力在浓度50 mg/mL时达1.85。此外,该多肽具备优良的溶解性、持水性、持油性、起泡性及泡沫稳定性。结论表明,酶法制备的白扁豆多肽具备良好的功能特性,可作为潜在功能性成分应用于食品工业,为白扁豆的高值化利用提供了理论与实验依据。

     

    Abstract: This study focused on optimizing the enzymatic hydrolysis process of white lentils to prepare peptides with high antioxidant activity and excellent functional properties, aiming to provide theoretical and technical basis for the high-value utilization of white lentils resources. White lentils protein isolated via alkali extraction and acid precipitation was used as the raw material. Hydrolytic efficiencies of four commercial proteases (trypsin, alkaline protease, neutral protease, papain) were systematically compared using degree of hydrolysis (DH) as the evaluation index. After screening the optimal protease, single-factor experiments combined with Box-Behnken response surface methodology (RSM) were employed to optimize hydrolysis parameters for maximum DH. Subsequently, in vitro functional properties of the resulting peptides were characterized. Results showed that alkaline protease exhibited the highest efficiency, with a DH of 22.09%±0.75% in preliminary screening. Optimal hydrolysis conditions were confirmed as: temperature 55 ℃, pH9.0, enzyme dosage 4239 U/g, substrate concentration 11%, yielding a DH of 23.48%±0.04%. Antioxidant assays showed that the half-maximal inhibitory concentration (IC50) of the peptides for DPPH, ABTS+, hydroxyl and superoxide anion radical scavenging were 1.28, 2.07, 0.30 and 3.24 mg/mL, respectively. At 50 mg/mL, their total reducing power reached 1.85 (at 700 nm). Moreover, the peptides showed superior functional properties including solubility, water-holding capacity, oil-holding capacity, foaming capacity and foam stability. These results confirm that enzymatically prepared white lentils peptides have promising functional characteristics, making them a potential functional ingredient in the food industry and providing theoretical and experimental basis for the high-value exploitation of white lentils.

     

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