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首页> 外文期刊>Journal of mass spectrometry: JMS >Analysis of pentacyclic triterpenes by LC-MS. A comparative study between APCI and APPI
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Analysis of pentacyclic triterpenes by LC-MS. A comparative study between APCI and APPI

机译:LC-MS分析五环三萜。 APCI与APPI的比较研究

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The analytical performances of three atmospheric-pressure sources, electrospray (ESI), atmospheric-pressure chemical ionization (APCI), and atmospheric-pressure photoionization (APPI), were evaluated for the analysis of pentacyclic triterpenes in liquid chromatography-mass spectrometry (LC-MS). Among these sources, APPI and APCI are particularly well adapted to sensitive analyses of pentacyclic triterpenes by LC-MS. Detection parameters were optimized for both the sources, and the effects of three dopants (toluene, acetone and anisole) on the detection (sensitivity and ion fingerprints in MS spectra) were studied in detail for APPI-MS. The limits of quantification were measured underselected ion monitoring conditions, in the range of 0.0005-0.015 mg l(-1) and 0.002-0.84 mg l(-1) in APPI and APCI, respectively, depending on the studied pentacyclic triterpene. Overall, APPI was found more sensitive than APCI in positive ion mode, whereas APCI shows the greatest sensitivity for acidic triterpenes in negative ion mode. Following this study, the developed LC-MS method was used for the characterization of pentacyclic triterpenes in three plant extracts. High amounts of betulinic acid, betulinic aldehyde and betulinic aldehyde acetate were observed in plane bark. The main component of birch bark is betulin and extracts of okoume resin exhibit high amounts of alpha- and beta-amyrin.
机译:对液相色谱-质谱法(LC-MS)中的五环三萜类化合物的分析,评估了三种大气压源电喷雾(ESI),大气压化学电离(APCI)和大气压光电离(APPI)的分析性能。多发性硬化症)。在这些来源中,APPI和APCI特别适合通过LC-MS对五环三萜进行灵敏分析。优化了两种来源的检测参数,并针对APPI-MS详细研究了三种掺杂剂(甲苯,丙酮和茴香醚)对检测的影响(MS光谱中的灵敏度和离子指纹图)。在选定的离子监测条件下,根据所研究的五环三萜,在APPI和APCI中分别在0.0005-0.015 mg l(-1)和0.002-0.84 mg l(-1)的范围内测量定量限。总体而言,APPI被发现在阳离子模式下比APCI更敏感,而APCI对酸性三萜在阴离子模式下显示出最大的敏感性。经过这项研究,开发的LC-MS方法用于表征三种植物提取物中的五环三萜。在平面树皮中观察到大量的桦木酸,桦木醛和乙酸桦木醛。桦树皮的主要成分是白桦蛋白,奥古梅树脂的提取物表现出大量的α-和β-淀粉糊精。

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