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DOI: 10.1055/s-0030-1271190
© Georg Thieme Verlag KG Stuttgart · New York
Profiling of Phenolics from Tephrosia cinerea
Publication History
received December 17, 2010
revised April 25, 2011
accepted May 12, 2011
Publication Date:
15 June 2011 (online)
Abstract
An HPLC-ESIMSn method, based on high-performance liquid chromatography coupled to electrospray positive ionization multistage ion trap mass spectrometry, has been used to rapidly identify and guide the isolation of phenolic constituents from the methanol extract of the aerial parts of T. cinerea. On the basis of the results of the online screening by HPLC-ESIMSn, 17 phenolic constituents, including two new compounds, namely demethylapollinin 7-O-β-D-glucopyranoside (1) and cineroside A (17), were isolated, and their structures were unambiguously assigned by the extensive use of 1D- and 2D-NMR experiments.
Key words
Tephrosia cinerea - Fabaceae - phenolic constituents - LC-MS profile
References
- 1 Tarus P K, Machocho A K, Lang'at-Thoruwa C C, Chhabra S C. Flavonoids from Tephrosia aequilata. Phytochemistry. 2002; 60 375-379
- 2 Chang Chee L, Chàvez D, Song L L, Farnsworth N R, Pezzuto J M, Kinghorn A D. Absolute configuration of novel bioactive flavonoids from Tephrosia purpurea. Org Lett. 2000; 2 515-518
- 3 Jonathan L T, Gbeassor M, Che C T, Fong H H, Farnsworth N R, Le Breton G C, Venton D L. Pseudosemiglabrin, a platelet aggregation inhibitor from Tephrosia semiglabra. J Nat Prod. 1990; 53 1572-1574
- 4 Pirrung M C, Lee Y R. Total synthesis and absolute configuration of pseudosemiglabrin, a platelet aggregation antagonist, and its diastereomer semiglabrin. J Am Chem Soc. 1995; 117 4814-4821
- 5 Arriaga A M C, Malcher G T, Lima J Q, Magalhaes F E A, Gomes T M B M, Oliveira M, Da Conceicao F, Andrade-Neto M, Mafezolli J, Santiago G M P. Composition and larvicidal activity of the essential oil from Tephrosia cinerea Pers. J Essent Oil Res. 2008; 20 450-451
- 6 Chang Chee L, Gerhäuser C, Song L, Farnsworth N R, Pezzuto J M, Kinghorn A D. Activity-guided isolation of constituents of Tephrosia purpurea with the potential to induce the phase II enzyme, quinone reductase. J Nat Prod. 1997; 60 869-873
- 7 Hisham A, John S, Al-Shuaily W, Asai T, Fujimoto Y. (+)-apollineanin: a new flavanone from Tephrosia apollinea. Nat Prod Res. 2006; 20 1046-1052
- 8 El-Din A A S, Darwish F A, Abou-Donia A. Flavonoids from Cleome droserifolia (Forssk.) Del. growing in Egypt. Egyptian J Pharm Sci. 1987; 28 313-319
- 9 Bohm B A, Donevan L S, Bhat U G. Flavonoids of some species of Bergenia, Francoa, Parnassia and Lepuropetalon. Biochem Syst Ecol. 1986; 14 75-77
- 10 Prabhakar P, Vanangamudi A, Gandhidasan R, Raman P W. Hookerianin: a flavanone from Tephrosia hookeriana. Phytochemistry. 1996; 43 315-316
- 11 Zhi W, Pedley L. Tephrosia Persoon. Flora of China. 2010; 10 190-193
Prof. Sonia Piacente
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