| Literature DB >> 27336316 |
Antonio Azzollini1, Quentin Favre-Godal1, Jiaozhen Zhang2, Laurence Marcourt1, Samad Nejad Ebrahimi3, Shuqi Wang2, Peihong Fan2, Hongxiang Lou2, Davy Guillarme1, Emerson Ferreira Queiroz1, Jean-Luc Wolfender1.
Abstract
In natural product research, the efficient purification of molecules from large amounts of complex extracts is a key element. In this regard, an integrative strategy for efficient MS-guided isolation of antifungal compounds has been developed. First, off-line HPLC antifungal activity-based profiling and HPLC-PDA-MS profiling were used to localize the compounds of interest on the analytical scale. Then, the analytical gradient was geometrically transferred to the flash chromatographic level. Finally, an MS-triggered isolation of the localized bioactive molecules was realized using high-resolution flash chromatographic columns (15 µm spherical particles) coupled to a single quadrupole mass spectrometer via a splitter system. This isolation strategy was applied for the MS-targeted purification of antifungal principles from the liverwort Chiloscyphus polyanthos. This rational methodology has high potential for the targeted large-scale purification of bioactive compounds, avoiding the need to repeat a given bioassay at each isolation step. Seven sesquiterpene lactones were isolated, of which five were found to be bioactive and one was reported as a new compound. The absolute configuration of some compounds was established for the first time by electronic circular dichroism spectroscopy. Georg Thieme Verlag KG Stuttgart · New York.Entities:
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Year: 2016 PMID: 27336316 DOI: 10.1055/s-0042-108207
Source DB: PubMed Journal: Planta Med ISSN: 0032-0943 Impact factor: 3.352