Enache Iuliana Maria, Vasile Aida Mihaela, Enachi Elena, Barbu Vasilica, Stănciuc Nicoleta, Vizireanu Camelia
Faculty of Food Science and Engineering, Dunărea de Jos University of Galati, Romania, 111, Domnească Street, 800201 Galati, Romania.
Polymers (Basel). 2020 Apr 14;12(4):906. doi: 10.3390/polym12040906.
was used in this study as a rich source of health-promoting bioactives. The cornelian cherries were used to extract the polyphenols and anthocyanins. The chromatographic profile of the fruit extract revealed the presence of several anthocyanins, mainly delphinidin, cyanidin and pelargonidin glycosides. The extract was co-microencapsulated with ssp. in a unique combination of whey protein isolates, inulin and chitosan by freeze-drying, with an encapsulation efficiency of 89.16 ± 1.23% for anthocyanins and 80.33 ± 0.44% for lactic acid bacteria. The pink-red colored powder showed a total anthocyanins content of 19.86 ± 1.18 mg cyanidin-3-glucoside/g dry weight (DW), yielding an antioxidant activity of 54.43 ± 0.73 mMol Trolox/g DW. The viable cells were 9.39 × 10 colony forming units (CFU)/g DW. The confocal microscopy analysis revealed the microencapsulated powder as a complex one, with several large formations containing smaller aggregates, consisting of the lactic acid bacteria cells, the cornelian cherries' bioactive compounds and the biopolymers. The powder was tested for stability over 90 days, showing a decrease of 50% in anthocyanins and 37% in flavonoids content, with no significant changes in antioxidant activity and CFU. The powder showed a significant inhibitory effect against the α-amylase of 89.72 ± 1.35% and of 24.13 ± 0.01% for α-glucosidase. In vitro digestibility studies showed a significant release of anthocyanins in gastric juice, followed by a decrease in intestinal simulated conditions. The functional properties of the powder were tested by addition into a yogurt, highlighting a higher and more stable antioxidant activity at storage when compared to the control.
在本研究中,欧洲酸樱桃被用作促进健康生物活性物质的丰富来源。用欧洲酸樱桃提取多酚和花青素。果实提取物的色谱图显示存在几种花青素,主要是飞燕草素、矢车菊素和天竺葵素糖苷。该提取物与嗜酸乳杆菌亚种通过冷冻干燥与乳清蛋白分离物、菊粉和壳聚糖的独特组合进行共微囊化,花青素的包封效率为89.16±1.23%,乳酸菌的包封效率为80.33±0.44%。粉红色粉末的总花青素含量为19.86±1.18毫克矢车菊素-3-葡萄糖苷/克干重(DW),抗氧化活性为54.43±0.73毫摩尔Trolox/克DW。活细胞为9.39×10菌落形成单位(CFU)/克DW。共聚焦显微镜分析显示微囊化粉末是一种复杂的粉末,有几个大的结构包含较小的聚集体,由乳酸菌细胞、欧洲酸樱桃的生物活性化合物和生物聚合物组成。对该粉末进行了90天的稳定性测试,结果显示花青素含量下降了50%,黄酮类化合物含量下降了37%,抗氧化活性和CFU没有显著变化。该粉末对α-淀粉酶显示出89.72±1.35%的显著抑制作用,对α-葡萄糖苷酶显示出24.13±0.01%的显著抑制作用。体外消化性研究表明,花青素在胃液中显著释放,随后在模拟肠道条件下减少。通过添加到酸奶中测试了该粉末的功能特性,结果表明与对照相比,储存时具有更高且更稳定的抗氧化活性。