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Effect-Directed Profiling of Powdered Tea Extracts for Catechins Theaflavins Flavonols and Caffeine

机译:用于儿茶素秋季紫杉蛋白黄酮和咖啡因的粉末茶提取物的影响仿形

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摘要

The antioxidative activity of Camelia sinensis tea and especially powdered tea extracts on the market, among others used as added value in functional foods, can considerably vary due to not only natural variance, but also adulteration and falsification. Thus, an effect-directed profiling was developed to prove the functional effects or health-promoting claims. It took 3–12 min per sample, depending on the assay incubation time, for 21 separations in parallel. Used as a fast product quality control, it can detect known and unknown bioactive compounds. Twenty tea extracts and a reference mixture of 11-bioactive compounds were investigated in parallel under the same chromatographic conditions by a newly developed reversed phase high-performance thin-layer chromatographic method. In eight planar on-surface assays, effect-directed tea profiles were revealed. Catechins and theaflavins turned out to be not only highly active, but also multi-potent compounds, able to act in a broad range of metabolic pathways. The flavan-3-ols acted as radical scavengers (DPPH∙ assay), antibacterials against Gram-positive Bacillus subtilis bacteria, and inhibitors of tyrosinase, α-glucosidase, β-glucosidase, and acetylcholinesterase. Further effects against Gram-negative Aliivibrio fischeri bacteria and β-glucuronidase were assigned to other components in the powdered tea extracts. According to their specifications, the activity responses of the powdered tea extracts were higher than in mere leaf extracts of green, white and black tea. The multi-imaging and effect-directed profiling was not only able to identify known functional food ingredients, but also to detect unknown bioactive compounds (including bioactive contaminants, residues or adulterations).
机译:Camelia sinensis茶和特别是市场上的粉末提取物的抗氧化活性,其中用作功能性食物的附加值,可能由于自然方差而且掺假和伪造而显着变化。因此,开发了一种效果定向的分析以证明功能效果或健康促进权利要求。每个样品需要3-12分钟,取决于测定孵化时间,平行分离21个。用作快速的产品质量控制,它可以检测已知和未知的生物活性化合物。通过新开发的反相高性能薄层色谱法在相同的色谱条件下平行研究二十茶提取物和11-生物活性化合物的参考混合物。在八个平面的表面测定中,揭示了效果导向的茶叶型材。儿茶素和秋季紫杉素原因不仅是高度活跃的,而且是多效化合物,能够采用广泛的代谢途径。 Flavan-3-OLS作为自由基清除剂(DPPH∙测定),针对革兰氏菌枯草芽孢杆菌的抗菌剂,以及酪氨酸酶,α-葡糖苷酶,β-葡糖苷酶和乙酰胆碱酯酶的抑制剂。将针对革兰氏阴性纤维细菌和β-葡糖醛酸酶的进一步效应分配给粉末茶提取物中的其他组分。根据他们的规格,粉末茶提取物的活性应答高于绿色,白色和红茶的叶子提取物。多成像和效果定向的分析不仅能够识别已知的功能性食品成分,而且还可以检测未知的生物活性化合物(包括生物活性污染物,残基或掺杂)。

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