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以乳酸菌为潜在益生菌和抗糖尿病增值粉末来源的葡萄渣干粉。

Dried grape pomace with lactic acid bacteria as a potential source for probiotic and antidiabetic value-added powders.

作者信息

Anghel Larisa, Milea Adelina Ștefania, Constantin Oana Emilia, Barbu Vasilica, Chițescu Carmen, Enachi Elena, Râpeanu Gabriela, Mocanu Gabriel-Dănuț, Stănciuc Nicoleta

机构信息

Faculty of Food Science and Engineering, Dunărea de Jos University of Galați, 800008 Galați, Romania.

Faculty of Medicine and Pharmacy, Dunărea de Jos University of Galați, 800008 Galați, Romania.

出版信息

Food Chem X. 2023 Jun 30;19:100777. doi: 10.1016/j.fochx.2023.100777. eCollection 2023 Oct 30.

Abstract

Two drying methods (convective (CD) and infrared (IR)) on grape pomace with probiotics were analysed, based on kinetic models and survival rate. The moisture ratio decreases linearly with drying time. The IR drying time reduced up to 14.3% at 50 °C. The Page model allowed to calculate the drying constant (0.188-0.404 s), whereas the effective moisture diffusivity ranged from 6.64 × 10 to 9.38 × 10 m/s for CD and from 8.83 × 10 to 11.16 × 10 m/s for IR, respectively. Chromatographic analysis highlighted the presence of 28 anthocyanins, with cyanidin-3--monoglucoside as a main bioactive in both powder. The probiotic survivale rate reached 7.0 log CFU/g dry weight after 14 days of storage at 4 °C. The extracts affected conformation of α-amylase, with binding constants lower for IR extract (15.94 ± 1.61 × 10 Mol/L) when compared with CD (25.09 ± 2.14 × 10 Mol/L). The IC values were significant higher for the IR (6.92 ± 0.09 μMol C3G/mL) when compared with CD extract (10.70 ± 0.12 μMol C3G/mL).

摘要

基于动力学模型和存活率,分析了两种对含有益生菌的葡萄渣的干燥方法(对流干燥(CD)和红外干燥(IR))。水分比随干燥时间呈线性下降。在50°C时,红外干燥时间最多减少了14.3%。佩奇模型可用于计算干燥常数(0.188 - 0.404秒),而对流干燥的有效水分扩散率范围为6.64×10至9.38×10米²/秒,红外干燥的有效水分扩散率范围分别为8.83×10至11.16×10米²/秒。色谱分析表明存在28种花青素,矢车菊素 - 3 - 单葡萄糖苷是两种粉末中的主要生物活性成分。在4°C储存14天后,益生菌存活率达到7.0 log CFU/克干重。提取物影响α - 淀粉酶的构象,与对流干燥提取物(25.09±2.14×10摩尔/升)相比,红外提取物的结合常数较低(15.94±1.61×10摩尔/升)。与对流干燥提取物(10.70±0.12微摩尔C3G/毫升)相比,红外提取物的IC值显著更高(6.92±0.09微摩尔C3G/毫升)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7df/10534120/0eb7d3e9a1b7/gr1.jpg

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