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高效薄层色谱-质谱联用技术能够可靠地分析酸浆不同植物部位中的酸浆苦素。

High performance thin-layer chromatography-mass spectrometry enables reliable analysis of physalins in different plant parts of Physalis alkekengi L.

作者信息

Kranjc Eva, Albreht Alen, Vovk Irena, Glavnik Vesna

机构信息

Department of Food Chemistry, National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.

Department of Food Chemistry, National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.

出版信息

J Chromatogr A. 2017 Dec 1;1526:137-150. doi: 10.1016/j.chroma.2017.09.070. Epub 2017 Sep 29.

Abstract

We developed first HPTLC and HPTLC-MS/MS methods which enable characterization of structurally similar and complex biologically active compounds - physalins - from crude extracts of Chinese lantern (Physalis alkekengi L.). Separation on HPTLC silica gel plates developed with ethyl acetate-toluene-formic acid (7:3:0.2, v/v) enabled densitometric screening of physalins in absorption and, after post-chromatographic derivatization with sulfuric acid reagent, also in fluorescence mode. Compared to existing (U)HPLC methods, in this case TLC provides an alternative selectivity, better sensitivity and higher resolution, which was exemplified by the separation of physalin L standard and its impurity, identified as 2,3,25,27-tetrahydrophysalin A. Strong ion suppression caused by the developing solvent additive - formic acid - was efficiently solved by two successive plate pre-developments with methanol-formic acid (9:1, v/v) and methanol. This significantly improved the sensitivity of HPTLC-MS/MS method, but also required a slightly modified developing solvent ethyl acetate-toluene-formic acid (6:4:0.2, v/v). Simultaneous hyphenation of HPTLC with a triple quadrupole and an ion trap mass analyzer enabled a reliable and straightforward non-targeted characterization of physalins from the same chromatographic zone (band) and determination of physalin types. The performance of developed HPTLC-densitometric and HPTLC-MS/MS methods was demonstrated by the analysis of physalins from the aqueous extracts, prepared by an optimized fast and simple extraction method under reflux. Variations in physalin profiles and abundances in different parts of P. alkekengi L. harvested at different stages of maturity were observed. This indicates that not all parts of the plant, or plant as a whole, are appropriate for specific medicinal applications. Husks are proposed as the most suitable plant part for P. alkekengi L. quality control, because they exhibited the most obvious MS fingerprints of physalins with minimal interferences.

摘要

我们开发了首个高效薄层色谱(HPTLC)和HPTLC-串联质谱(HPTLC-MS/MS)方法,可对酸浆(Physalis alkekengi L.)粗提物中结构相似且复杂的生物活性化合物——酸浆苦素进行表征。在以乙酸乙酯-甲苯-甲酸(7:3:0.2,v/v)展开的HPTLC硅胶板上进行分离,能够对酸浆苦素进行吸光度的光密度扫描,在用硫酸试剂进行色谱后衍生化后,还能以荧光模式进行扫描。与现有的(超)高效液相色谱(U)HPLC方法相比,在此情况下薄层色谱(TLC)提供了另一种选择性、更好的灵敏度和更高的分辨率,酸浆苦素L标准品及其杂质(鉴定为2,3,25,27-四氢酸浆苦素A)的分离就是例证。展开溶剂添加剂甲酸引起的强离子抑制通过用甲醇-甲酸(9:1,v/v)和甲醇进行两次连续的板预展开得到有效解决。这显著提高了HPTLC-MS/MS方法的灵敏度,但也需要对展开溶剂乙酸乙酯-甲苯-甲酸(6:4:0.2,v/v)进行轻微修改。HPTLC与三重四极杆和离子阱质量分析仪的同时联用能够对同一色谱区域(谱带)中的酸浆苦素进行可靠且直接的非靶向表征,并确定酸浆苦素的类型。通过对经优化的快速简单回流提取法制备的水提取物中的酸浆苦素进行分析,证明了所开发的HPTLC-光密度法和HPTLC-MS/MS方法的性能。观察到在不同成熟阶段收获的酸浆不同部位的酸浆苦素谱和丰度存在差异。这表明并非植物的所有部位或整个植物都适合特定的药用应用。建议将果壳作为酸浆质量控制最合适的植物部位,因为它们显示出酸浆苦素最明显的质谱指纹图谱且干扰最小。

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