College of Food, Heilongjiang Bayi Agricultural University, Xinfeng Lu 5, Daqing 163319, China; Chinese National Engineering Research Center, Daqing 163319, China.
Food Chem. 2023 Oct 15;423:136286. doi: 10.1016/j.foodchem.2023.136286. Epub 2023 May 5.
In this study, a new composite modification method utilizing a cavitation jet combined with a composite enzyme (cellulase and xylanase) was developed to modify the insoluble dietary fibre (IDF) of okara (IDF was first treated with the cavitation jet at 0.3 MPa for 10 min, and then 6% of the enzyme was added, the composite enzyme with a 1:1 enzyme activity was hydrolysed for 1.5 h to obtain the modified IDF), and explored the structure-activity relationship between the structural properties, physicochemical properties and biological activities of IDF before and after modification. Under the action of cavitation jet and double enzyme hydrolysis, the modified IDF had a wrinkled and loose porous structure, which improved the thermal stability. Its water holding capacity (10.81 ± 0.17 g/g), oil holding capacity (4.83 ± 0.03 g/g) and swelling capacity (18.60 ± 0.60 mL/g) were significantly higher than those of unmodified IDF. In addition, compared with other IDFs, the combined modified IDF had greater advantages in nitrite adsorption (13.75 ± 0.14 μg/g), glucose adsorption (6.46 ± 0.28 mmol/g) and cholesterol adsorption (16.86 ± 0.83 mg/g), and improved in vitro probiotic activity and in vitro anti-digestion rate. The results show that the cavitation jet combined with compound enzyme modification method can effectively improve the economic value of okara.
在本研究中,开发了一种新的复合改性方法,利用空化射流与复合酶(纤维素酶和木聚糖酶)相结合,对豆渣中的不可溶性膳食纤维(IDF)进行改性(IDF 首先在 0.3 MPa 下用空化射流处理 10 分钟,然后加入 6%的酶,用 1:1 的酶活复合酶水解 1.5 小时,得到改性 IDF),并探讨了 IDF 改性前后结构-活性关系,以及结构特性、物理化学性质和生物活性之间的关系。在空化射流和双酶水解的作用下,改性 IDF 具有皱缩疏松的多孔结构,提高了热稳定性。其持水力(10.81±0.17 g/g)、持油力(4.83±0.03 g/g)和膨胀力(18.60±0.60 mL/g)显著高于未改性 IDF。此外,与其他 IDF 相比,复合改性 IDF 在亚硝酸盐吸附(13.75±0.14 μg/g)、葡萄糖吸附(6.46±0.28 mmol/g)和胆固醇吸附(16.86±0.83 mg/g)方面具有更大的优势,同时提高了体外益生菌活性和体外抗消化率。结果表明,空化射流与复合酶改性方法相结合,可有效提高豆渣的经济价值。