Structure–rheology characterization of whey-less Feta cheese containing milk protein concentrate/soy protein isolate

IF 2.2 4区 工程技术 Q2 MECHANICS
Newsha Omrani Khiabanian, Ali Motamedzadegan, Shahram Naghizadeh Raisi, Mazdak Alimi
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引用次数: 2

Abstract

In this study, the properties of whey-less Feta cheese (WLFC) manufactured from milk protein concentrate (MPC) with the addition of soy protein isolate (SPI) were investigated. Six treatments were made using different ratios of MPC:SPI (12:0, 10:2, 9:3, 8:4, 7:5, 6:6% w/v) and stored for 45 days. Then, the textural properties, rheological behavior of samples, and microstructural and sensory features were evaluated. Furthermore, FTIR spectroscopy was used to provide spectral data on the protein, acids, carbohydrates, lipids, and water. The results showed that different concentrations of SPI significantly affected pH, acidity, total solids (TS), and color parameters. So that, by increasing SPI concentration, the lightness and greenness decreased, and the yellowness increased. The viscoelastic behavior of all samples demonstrated a higher G′ compared to G″. The replacement of MPC with SPI decreased G′, G″, and texture parameters. The images of the microstructure indicated a weak structure with a more open protein network in WLFCs fortified with high levels of SPI (5, 6%). In conclusion, results showed that SPI could be a good substitution for MPC at a 2–3% concentration without negative effects on WLFCs.

Abstract Image

含牛奶浓缩蛋白/分离大豆蛋白的无乳清菲达奶酪的结构-流变学表征
本研究以乳蛋白精(MPC)为原料,添加大豆分离蛋白(SPI)制备无乳清菲达奶酪(WLFC)。用不同比例的MPC:SPI (12:0, 10:2, 9:3, 8:4, 7:5, 6:6% w/v)处理6次,保存45天。然后,评估了样品的纹理性能、流变行为、微观结构和感官特征。此外,FTIR光谱还用于提供蛋白质、酸、碳水化合物、脂类和水的光谱数据。结果表明,不同浓度的SPI对pH、酸度、总固形物(TS)和颜色参数有显著影响。因此,随着SPI浓度的增加,明暗度和绿度降低,黄度增加。所有样品的粘弹性行为都比G '高″。用SPI代替MPC降低了G′、G″和纹理参数。显微结构图像显示,在高水平SPI强化的wlfc中,结构较弱,蛋白质网络更开放(5,6%)。结果表明,在2-3%的浓度下,SPI可以很好地替代MPC,而对wlfc没有负面影响。
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来源期刊
Korea-Australia Rheology Journal
Korea-Australia Rheology Journal 工程技术-高分子科学
CiteScore
2.80
自引率
0.00%
发文量
28
审稿时长
>12 weeks
期刊介绍: The Korea-Australia Rheology Journal is devoted to fundamental and applied research with immediate or potential value in rheology, covering the science of the deformation and flow of materials. Emphases are placed on experimental and numerical advances in the areas of complex fluids. The journal offers insight into characterization and understanding of technologically important materials with a wide range of practical applications.
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