Aly Esmat, Sánchez-Moya Teresa, Darwish Aliaa A, Ros-Berruezo Gaspar, López-Nicolás Rubén
Dairy Research Department, Food Technology Research Institute, Agricultural Research Center, Giza, Egypt.
Department of Food Science and Nutrition, Faculty of Veterinary Science, Regional Campus of International Excellence Campus Mare Nostrum, University of Murcia, Murcia, Spain.
J Food Sci. 2022 May;87(5):1999-2008. doi: 10.1111/1750-3841.16140. Epub 2022 Apr 2.
Recently, plant-based milk substitutes, as an emerging industry, are receiving more attention. Despite that, these dairy alternatives have not been adequately studied for their functional properties. Thus, the current research was devoted to study the satiety potential through in vitro secretion of cholecystokinin (CCK) and glucagon-like peptide-1 (GLP-1), and the antioxidant capacity of these dairy alternatives after in vitro digestion. The enteroendocrine cell line, STC-1, was used to measure satiety hormones release (CCK and GLP-1) by enzyme-linked immunoassay (ELISA). Also, total phenolic and flavonoid contents and antioxidant capacity (using oxygen radical absorbance capacity [ORAC], ferric reducing antioxidant power [FRAP], and 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid [ABTS] assays) were measured before and after in vitro digestion. The results demonstrated that CCK secretion was significantly (p < 0.05) higher for cow's milk (350.64 pg ml ) as compared to plant-based milk substitutes. Among the plant-based milk substitutes, tiger nut milk showed the highest CCK stimulant (228.96 pg ml ), followed by hazelnut milk (220.04 pg ml ). Concerning GLP-1 release, the data exhibited that spelt milk was the food with the highest induction of GLP-1 hormone secretion, followed by cow's milk (910.17 and 876.59 pg ml , respectively), but without any significant differences between them. total phenolic content (TPC) values strongly increased after in vitro digestion, cow's milk and soymilk being the samples with the highest TPC values after in vitro digestion (165.76 and 153.71 mg GAE/100 ml, respectively). In line with TPC values, soymilk had the highest ORAC, ABTS, and FRAP values after in vitro digestion (25.41, 8.17, and 2.51 µmol TE/ml, respectively). Thus, these dairy alternatives could be an adequate substitute for cow's milk, according to its satiety and antioxidant capacity. PRACTICAL APPLICATION: The first study deals with the efficacy of plant-based milk substitutes as satiating foods. Spelt milk was the highest stimulant for GLP-1 secretion. Tiger nut milk showed the highest CCK stimulant, followed by hazelnut milk. TPC and total antioxidant capacity increased after digestion.
近年来,植物基牛奶替代品作为一个新兴产业,正受到越来越多的关注。尽管如此,这些乳制品替代品的功能特性尚未得到充分研究。因此,当前的研究致力于通过体外分泌胆囊收缩素(CCK)和胰高血糖素样肽-1(GLP-1)来研究饱腹感潜力,以及这些乳制品替代品在体外消化后的抗氧化能力。使用肠内分泌细胞系STC-1通过酶联免疫吸附测定(ELISA)来测量饱腹感激素的释放(CCK和GLP-1)。此外,在体外消化前后测量总酚和黄酮含量以及抗氧化能力(使用氧自由基吸收能力[ORAC]、铁还原抗氧化能力[FRAP]和2,2'-联氮-双-(3-乙基苯并噻唑啉-6-磺酸)[ABTS]测定)。结果表明,与植物基牛奶替代品相比,牛奶的CCK分泌显著更高(p < 0.05)(350.64 pg/ml)。在植物基牛奶替代品中,虎坚果奶的CCK刺激作用最高(228.96 pg/ml),其次是榛子奶(220.04 pg/ml)。关于GLP-1的释放,数据显示斯佩尔特小麦奶是诱导GLP-1激素分泌最高的食物,其次是牛奶(分别为910.17和876.59 pg/ml),但它们之间没有任何显著差异。体外消化后总酚含量(TPC)值大幅增加,牛奶和豆浆是体外消化后TPC值最高的样品(分别为165.76和153.71 mg GAE/100 ml)。与TPC值一致,豆浆在体外消化后的ORAC、ABTS和FRAP值最高(分别为25.41、8.17和2.51 μmol TE/ml)。因此,根据其饱腹感和抗氧化能力,这些乳制品替代品可以成为牛奶的合适替代品。实际应用:第一项研究涉及植物基牛奶替代品作为饱腹食物的功效。斯佩尔特小麦奶是GLP-1分泌的最高刺激物。虎坚果奶的CCK刺激作用最高,其次是榛子奶。消化后TPC和总抗氧化能力增加。