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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Non-target bioanalytical eight-dimensional hyphenation including bioassay, heart-cut trapping, online desalting, orthogonal separations and mass spectrometry
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Non-target bioanalytical eight-dimensional hyphenation including bioassay, heart-cut trapping, online desalting, orthogonal separations and mass spectrometry

机译:非目标生物分析八维连字,包括生物测定,心切诱捕,在线脱盐,正交分离和质谱

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摘要

It is still a challenge to discover and identify individual bioactive compounds directly in multicomponent mixtures. Current workflows are too tedious for routine use. Hence, the hyphenation of separation and detection techniques is a powerful tool to maximize the information obtained by a single sample run. A robust eight-dimensional (8D) hyphenation was developed. Orthogonal separations, biological assay detection, analyte trapping, desalting, and physico-chemical detections were arranged in the following order, i.e. 1) normal phase high-performance thin-layer chromatography (NP-HPTLC) separation, 2) Vis detection, 3) UV detection, 4) fluorescence detection (FLD), 5) bioassay for effect-directed analysis (EDA), 6) heart-cut trapping/desalting/elution to reversed phase high-performance liquid chromatography (RPHPLC) separation, 7) photodiode array (PDA) and 8) mass spectrometry (MS) detection. For the first time, the hyphenation exploited online analyte trapping to desalt the eluted bioactive zone from the plate containing highly salted bioassay media. Subsequent valve switching guided the trapped analyte(s) to the main column, followed by multiple detection. As proof-of-principle, cinnamon samples were analyzed by NP-HPTLC & minus;UV/Vis/FLD & minus;EDA & minus;RP-HPLC & minus;PDA & minus;MS, whereby a bioactive zone was separated into two distinct peaks detected by PDA and MS to be 2-methoxy cinnamaldehyde and cinnamaldehyde. The developed 8D hyphenation is applicable for routine, allowing the non-target high-throughput screening of complex samples for individual bioactive compounds.
机译:直接在多组分混合物中发现和鉴定单个生物活性化合物仍然是一个挑战。目前的工作流程对于日常使用来说太乏味了。因此,分离和检测技术的结合是一个强大的工具,可以最大限度地利用单个样本获得的信息。开发了一种健壮的八维(8D)连字号。正交分离、生物测定检测、分析物捕获、脱盐和物理化学检测按以下顺序排列,即1)正相高效薄层色谱(NP-HPTLC)分离、2)可见光检测、3)紫外检测、4)荧光检测(FLD)、5)效应导向分析的生物测定(EDA),6)心脏切割捕获/脱盐/洗脱至反相高效液相色谱(RPHPLC)分离,7)光电二极管阵列(PDA)和8)质谱(MS)检测。联用首次利用在线分析物捕集技术,从含有高盐生物测定培养基的平板上脱盐洗脱的生物活性区。随后的阀门切换将截留的分析物引导至主柱,然后进行多次检测。作为原理证明,肉桂样品采用NP-HPTLC&NESS;UV/Vis/FLD和负号;EDA&负;反相高效液相色谱法;PDA&负;MS,其中一个生物活性区被分离为两个不同的峰,通过PDA和MS检测为2-甲氧基肉桂醛和肉桂醛。开发的8D联用适用于常规,允许非目标高通量筛选单个生物活性化合物的复杂样品。

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