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与(生物)测定法和质谱联用的高效薄层色谱法——一种用于发现和定量生物活性成分的合适方法?以姜黄和水飞蓟提取物为例进行说明。

High-performance thin-layer chromatography linked with (bio)assays and mass spectrometry - a suited method for discovery and quantification of bioactive components? Exemplarily shown for turmeric and milk thistle extracts.

作者信息

Taha Mahmoud N, Krawinkel Michael B, Morlock Gertrud E

机构信息

Justus Liebig University Giessen, Institute of Nutritional Science, Chair of Food Science, Heinrich-Buff-Ring 26-32, 35392 Giessen, Germany; Justus Liebig University Giessen, Institute of Nutritional Science, Wilhelmstrasse 20, 35392 Giessen, Germany.

Justus Liebig University Giessen, Institute of Nutritional Science, Wilhelmstrasse 20, 35392 Giessen, Germany.

出版信息

J Chromatogr A. 2015 May 15;1394:137-47. doi: 10.1016/j.chroma.2015.03.029. Epub 2015 Mar 18.

Abstract

Extraction parameters, chemical fingerprint, and the single compounds' activity levels were considered for the selection of active botanicals. For an initial survey, the total bioactivity (i.e., total reducing capacity, total flavonoids contents and free radical scavenging capacity) of 21 aqueous and 21 ethanolic plant extracts was investigated. Ethanolic extracts showed a higher yield and were further analyzed by HPTLC in detail to obtain fingerprints of single flavonoids and further bioactive components. Exemplarily shown for turmeric (Curcuma longa) and milk thistle (Silybum marianum), effect-directed analysis (EDA) was performed using three selected (bio)assays, the Aliivibrio fischeri bioassay, the Bacillus subtilis bioassay and the 2,2-diphenyl-1-picrylhydrazyl (DPPH*) assay. As a proof of principle, the bioactive components found in the extracts were confirmed by HPTLC-MS. Bioassays in combination with planar chromatography directly linked to the known, single effective compounds like curcumin and silibinin. However, also some unknown bioactive components were discovered and exemplarily characterized, which demonstrated the strength of this kind of EDA. HPTLC-UV/Vis/FLD-EDA-MS could become a useful tool for selection of active botanicals and for the activity profiling of the active ingredients therein. The flexibility in effect-directed detections allows a comprehensive survey of effective ingredients in samples. This streamlined methodology comprised a non-targeted, effect-directed screening first, followed by a highly targeted characterization of the discovered bioactive compounds. HPTLC-EDA-MS can also be recommended for bioactivity profiling of food on the food intake side, as not only effective phytochemicals, but also unknown bioactive degradation products during food processing or contamination products or residues or metabolites can be detected. Thus, an efficient survey on potential food intake effects on wellness could be obtained. Having performed both, sum parameter assays and HPTLC analysis, a comparison of both approaches was made and discussed.

摘要

在选择活性植物药时,考虑了提取参数、化学指纹图谱以及单一化合物的活性水平。为了进行初步调查,研究了21种水性植物提取物和21种乙醇植物提取物的总生物活性(即总还原能力、总黄酮含量和自由基清除能力)。乙醇提取物的产率更高,并通过高效薄层层析(HPTLC)进行了详细分析,以获得单一黄酮类化合物和其他生物活性成分的指纹图谱。以姜黄(Curcuma longa)和水飞蓟(Silybum marianum)为例,使用三种选定的(生物)测定方法进行了效应导向分析(EDA),即费氏弧菌生物测定法、枯草芽孢杆菌生物测定法和2,2-二苯基-1-苦基肼(DPPH*)测定法。作为原理验证,提取物中发现的生物活性成分通过HPTLC-MS得到了证实。生物测定与平面色谱相结合,直接关联到姜黄素和水飞蓟宾等已知的单一有效化合物。然而,还发现了一些未知的生物活性成分并进行了示例性表征,这证明了这种EDA的优势。HPTLC-UV/Vis/FLD-EDA-MS可能成为选择活性植物药及其活性成分活性谱分析的有用工具。效应导向检测的灵活性允许对样品中的有效成分进行全面调查。这种简化的方法首先包括非靶向的效应导向筛选,然后是对发现的生物活性化合物进行高度靶向的表征。HPTLC-EDA-MS也可推荐用于食物摄入方面食物的生物活性谱分析,因为不仅可以检测到有效的植物化学物质,还可以检测到食物加工过程中未知的生物活性降解产物、污染产物、残留物或代谢产物。因此,可以对潜在的食物摄入对健康的影响进行有效调查。在进行了总和参数测定和HPTLC分析之后,对这两种方法进行了比较和讨论。

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