Aleya Amina, Mihok Emőke, Pecsenye Bence, Jolji Maria, Kertész Attila, Bársony Péter, Vígh Szabolcs, Cziaky Zoltán, Máthé Anna-Beáta, Burtescu Ramona Flavia, Oláh Neli-Kinga, Neamțu Andreea-Adriana, Turcuș Violeta, Máthé Endre
Doctoral School of Animal Science, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Böszörményi Str. 128, 4032 Debrecen, Hungary.
Doctoral School of Nutrition and Food Science, Faculty of Agricultural and Food Sciences and Environmental Management, University of Debrecen, Böszörményi Str. 128, 4032 Debrecen, Hungary.
Antioxidants (Basel). 2023 Sep 4;12(9):1717. doi: 10.3390/antiox12091717.
The extracts of whole plants or specific organs from different plant species are gaining increasing attention for their phytotherapy applications. Accordingly, we prepared standardized gemmotherapy extracts (GTEs) from young shoots/buds of olive (), sweet almond (), and black mulberry (), and analyzed the corresponding phytonutrient profiles. We identified 42, 103, and 109 phytonutrients in the olive, almond, and black mulberry GTEs, respectively, containing amino acids, vitamins, polyphenols, flavonoids, coumarins, alkaloids, iridoids, carboxylic acids, lignans, terpenoids, and others. In order to assess the physiological effects generated by the GTEs, we developed a translational nutrition model based on and . The results indicate that GTEs could influence, to a variable extent, viability and ATP synthesis, even though both are dependent on the specific carbohydrate load of the applied diet and the amino acid and polyphenol pools provided by the GTEs. It seems, therefore, likely that the complex chemical composition of the GTEs offers nutritional properties that cannot be separated from the health-promoting mechanisms that ultimately increase viability and survival. Such an approach sets the paves the way for the nutritional genomic descriptions regarding GTE-associated health-promoting effects.
不同植物物种的全株或特定器官提取物因其植物疗法应用而受到越来越多的关注。因此,我们从橄榄、甜杏仁和黑桑的幼芽/嫩枝中制备了标准化的胚芽疗法提取物(GTEs),并分析了相应的植物营养素谱。我们在橄榄、杏仁和黑桑的GTEs中分别鉴定出42种、103种和109种植物营养素,包括氨基酸、维生素、多酚、黄酮类化合物、香豆素、生物碱、环烯醚萜、羧酸、木脂素、萜类化合物等。为了评估GTEs产生的生理效应,我们基于[具体内容缺失]和[具体内容缺失]开发了一种转化营养模型。结果表明,GTEs可能在不同程度上影响细胞活力和ATP合成,尽管这两者都取决于所应用饮食的特定碳水化合物负荷以及GTEs提供的氨基酸和多酚库。因此,GTEs复杂的化学成分似乎提供了一些营养特性,这些特性与最终提高细胞活力和存活率的健康促进机制无法分开。这种方法为关于GTEs相关健康促进作用的营养基因组学描述铺平了道路。