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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effect-directed analysis by high-performance thin-layer chromatography for bioactive metabolites tracking in Primula veris flower and Primula boveana leaf extracts
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Effect-directed analysis by high-performance thin-layer chromatography for bioactive metabolites tracking in Primula veris flower and Primula boveana leaf extracts

机译:高性能薄层色谱法对瓜氨酸花和樱草杉叶片提取物进行高性能薄层色谱追踪的影响

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The genus Primula (Primulaceae) comprises species with high medicinal as well as ornamental values. Plants belonging to this genus are well recognized for their richness in bioactive constituents. The huge variety of secondary metabolites make their complete analysis impossible. In order to cope with this challenge, effect-directed analysis (EDA) via HPTLC coupled to structure elucidation techniques was applied on Primula species for the first time. As straightforward non-target bioanalytical technique, HPTLC-UV/Vis/FLD-EDA-ESI-HRMS hyphenates three different orthogonal dimensions, i.e. chromatography with spectrometric detection, biological/enzymatic assays and HRMS. The bioactive metabolites were determined in the middle polar extracts of two Primula species, P. veris (flower) and P. boveana (leaf). The bioactivity profiling comprised the antibacterial activity against Aliivibrio fischeri and Bacillus subtilis bacterial strains and acetyl-/butyrylcholinesterase (AChE/BChE) inhibition assays. The compounds were characterized and identified via their recorded spectral data (HRMS and H-1 NMR). The results showed that linoleic and linolenic acids were the principle bioactive compounds present in the studied P. veris flower extract. In the P. boveana leaf extract, flavone, 2'-methoxy-, 2'-hydroxy- and 5,6,2',6'-tetramethoxyflavone (zapotin) were determined as active metabolites. The identification of zapotin, which was previously undescribed in the investigated plant, was considered as the strength of the straightforward non-target bioanalytical technique. Flavone turned out to be the highest potent metabolite, and at the same time, a multipotent compound referring to its various bioactivities discovered. An equivalency calculation of the HPTLC-AChE inhibition by flavone was performed with reference to the well-known inhibitor rivastigmine. As a result, the amount of flavone contained in 10.0 mu g dry powder of P. boveana (corresponding to 0.1 mu L extract) inhibited as strong as 4.5 mu g rivastigmine. In other words, the flavone contained in P. boveana leaf extract powder turned out to be half as strong as the well-known AChE inhibitor rivastigmine. (C) 2019 Elsevier B.V. All rights reserved.
机译:属报春花(报春花科)包括具有很高的药用以及观赏价值物种。属于该属植物是公认其在生物活性成分丰富。种类繁多的次生代谢产物使自己完整的分析是不可能的。为了应对这一挑战,通过HPTLC效果定向分析(EDA),耦合到结构解析技术已于报春花物种施加首次。作为直接的非目标生物分析技术,HPTLC-UV /可见光/ FLD-EDA-ESI-HRMS叫法三个不同的正交维度,即,光谱检测,生物/酶测定和HRMS层析。生物活性代谢物在两种报春花,P. VERIS(花)和P. boveana(叶),中间极性提取物确定。生物活性包括PROFILING针对Aliivibrio鲵和枯草芽孢杆菌的细菌菌株和乙酰基/丁酰胆碱酯酶(AChE /的BChE)抑制测定的抗菌活性。的化合物进行了表征,并通过其记录的光谱数据(HRMS和H-1 NMR)来识别。结果表明,亚油酸和亚麻酸是原理存在于所研究的P. VERIS花提取物中的生物活性化合物。在P. boveana叶提取物,黄酮,2'-甲氧基,2'-羟基和5,6,2' ,6'- tetramethoxyflavone(zapotin)测定为活性代谢物。 zapotin的识别,这是以前在所研究的植物未描述,被认为是简单的非目标生物分析技术的强度。黄酮竟然是最有效的代谢物,并在同一时间,指的是它的各种生物活性多能复合发现。所述HPTLC-AChE的抑制黄酮的等价计算是参照公知的抑制剂利凡斯的明进行。其结果是,包含在抑制强如4.5亩克卡巴拉汀P. boveana(对应于0.1亩大号提取物)10.0亩克干粉黄酮的量。换句话说,黄酮包含在原来是半强如公知的AChE抑制剂利凡斯的明P. boveana叶提取物粉末。 (c)2019 Elsevier B.v.保留所有权利。

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