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首页> 外文期刊>Analytical and bioanalytical chemistry >Typical ultraviolet spectra in combination with diagnostic mass fragmentation analysis for the rapid and comprehensive profiling of chlorogenic acids in the buds of Lonicera macranthoides
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Typical ultraviolet spectra in combination with diagnostic mass fragmentation analysis for the rapid and comprehensive profiling of chlorogenic acids in the buds of Lonicera macranthoides

机译:典型的紫外光谱结合诊断性质量碎片分析,可快速,全面地分析忍冬忍冬芽中的绿原酸

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A major challenge of profiling chlorogenic acids (CGA) in natural products is to effectively detect unknown or minor isomeric compounds. Here, we developed an effective strategy, typical ultraviolet (UV) spectra in combination with diagnostic mass fragmentation analysis based on HPLC-DAD-QTOF-MS/MS, to comprehensively profile CGA in the buds of Lonicera macranthoides. First, three CGA UV patterns were obtained by UV spectra screening. Second, 13 types of CGA classified by molecular weights were found by thorough analysis of CGA peaks using high-resolution MS. Third, selected ion monitoring (SIM) was carried out for each type of CGA to avoid overlooking of minor ones. Fourth, MS/MS spectra of each CGA were investigated. Then 70 CGA were identified by matching their UV spectra, accurate mass signals and fragmentation patterns with standards or previously reported compounds, including six caffeoylquinic acids (CQA), six diCQA, one triCQA, three caffeoylshikimic acids (CSA), six diCSA, one triCSA, three p-coumaroylquinic acids (pCoQA), four p-coumaroylcaffeoylquinic acids (pCoCQA), four feruloylquinic acids (FQA), five methyl caffeoylquinates (MCQ), three ethyl caffeoylquinates (ECQ), three dimethoxycinnamoylquinic acids (DQA), six caffeoylferuloylquinic acids (CFQA), six methyl dicaffeoylquinates (MdiCQ), four FQA glycosides (FQAG), six MCQ glycosides (MCQG), and three ethyl dicaffeoylquinates (EdiCQ). Forty-five of them were discovered from Lonicera species for the first time, and it is noted that CGA profiles were investigated for the first time in L. macranthoides. Results indicated that the developed method was a useful approach to explore unknown and minor isomeric compounds from complex natural products.
机译:在天然产物中分析绿原酸(CGA)的主要挑战是有效检测未知或次要异构化合物。在这里,我们开发了一种有效的策略,将典型的紫外线(UV)光谱与基于HPLC-DAD-QTOF-MS / MS的诊断质量碎片分析相结合,来全面分析忍冬忍冬芽中的CGA。首先,通过紫外光谱筛选获得了三个CGA UV图案。其次,通过使用高分辨率质谱仪对CGA峰进行全面分析,发现了13种按分子量分类的CGA。第三,对每种类型的CGA进行了选定的离子监测(SIM),以避免忽略较小的离子。第四,研究了每个CGA的MS / MS光谱。然后通过将其紫外光谱,准确的质量信号和裂解模式与标准品或先前报道的化合物进行匹配来鉴定70种CGA,其中包括6种咖啡酰奎尼酸(CQA),6种diCQA,1种triCQA,3种咖啡酰yl草酸(CSA),6种diCSA,1种triCSA ,三个对香豆酰奎尼酸(pCoQA),四个对香豆酰咖啡酰奎尼酸(pCoCQA),四个阿魏酰奎尼酸(FQA),五个甲基咖啡酰奎宁酸酯(MCQ),三个乙基咖啡酰奎宁酸酯(ECQ),三个二甲氧基肉桂酸奎宁酸(DQA),六个(CFQA),六甲基二咖啡酰奎宁酯(MdiCQ),四个FQA糖苷(FQAG),六个MCQ苷(MCQG)和三乙基二咖啡酰奎宁酯(EdiCQ)。首次从忍冬属植物中发现了其中的45种,并且注意到首次在马氏乳杆菌中研究了CGA谱。结果表明,所开发的方法是探索复杂天然产物中未知和次要异构化合物的有用方法。

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