Konaré Mamadou Abdoulaye, Condurache Nina Nicoleta, Togola Issiaka, Păcularu-Burada Bogdan, Diarra Nouhoum, Stănciuc Nicoleta, Râpeanu Gabriela
Laboratory of Plant and Food Biochemistry, Faculty of Sciences and Techniques (FST), University of Sciences, Techniques and Technologies of Bamako (USTTB), Bamako, Mali.
Integrated Center for Research, Expertise and Technological Transfer, Faculty of Food Science and Engineering, Dunărea de Jos University of Galati, 800201 Galati, Romania.
Plants (Basel). 2023 Jan 6;12(2):267. doi: 10.3390/plants12020267.
Currently, microencapsulation has become a viable method of nutrient delivery for the food industry. This work microencapsulated the bioactive compounds extracted from two neglected species ( and ) by freeze-drying. A combination of wall materials (whey protein and pectin; soy protein and maltodextrin) was chosen to prepare the microcapsules. The phytochemical and physicochemical characterization of the microcapsules was then carried out. The encapsulation yield ranged from 82.77% to 96.05% for and , respectively, whereas the efficiency was 76.18 ± 1.39% and 80.93 ± 1.71%. The stimulated gastrointestinal test showed that encapsulation increased the bioavailability of the bioactive compounds. The total carotenoids were the most bioavailable compounds with 85.89 ± 0.06% for and 70.46 ± 1.10% for , followed by total flavonoids for with 63.27 ± 1.56%. Furthermore, regardless of species or wavelengths, the HPLC analysis resulted in the identification of 17 bioactive metabolites. The predominant one was epicatechin, whose level ranged from 231.52 ± 5.06 to 250.99 ± 3.72 mg/100 g DW in and 91.80 ± 3.85 to 116.40 ± 4.09 mg/100 g DW in . In estimating the enzyme inhibition and antioxidant power, both studied fruits showed antidiabetic, inflammatory, and antioxidant effects. These findings suggest that natural bioactive compounds are abundant in the fruits of and and could be a valuable source for the food and pharmaceutical industries.
目前,微胶囊化已成为食品工业中一种可行的营养输送方法。这项工作通过冷冻干燥对从两种被忽视的物种(此处物种名缺失)中提取的生物活性化合物进行了微胶囊化处理。选择了壁材组合(乳清蛋白和果胶;大豆蛋白和麦芽糊精)来制备微胶囊。然后对微胶囊进行了植物化学和物理化学表征。两种物种的包封率分别为82.77%至96.05%,而效率分别为76.18±1.39%和80.93±1.71%。模拟胃肠道试验表明,微胶囊化提高了生物活性化合物的生物利用度。总类胡萝卜素是生物利用度最高的化合物,一种物种为85.89±0.06%,另一种为70.46±1.10%,其次是一种物种的总黄酮为63.27±1.56%。此外,无论物种或波长如何,HPLC分析鉴定出了17种生物活性代谢物。主要的是表儿茶素,其含量在一种物种中为231.52±5.06至250.99±3.72mg/100g干重,在另一种物种中为91.80±3.85至116.40±4.09mg/100g干重。在评估酶抑制和抗氧化能力时,两种研究的水果均显示出抗糖尿病、抗炎和抗氧化作用。这些发现表明,两种物种的果实中天然生物活性化合物丰富,可能是食品和制药行业的宝贵来源。