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High‐performance liquid chromatography and LC‐ESI‐MS method for identification and quantification of two isomeric polyisoprenylated benzophenones isoxanthochymol and camboginol in different extracts of Garcinia species
Author(s) -
Kumar Satyanshu,
Sharma Shelly,
Chattopadhyay Sunil K.
Publication year - 2009
Publication title -
biomedical chromatography
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.4
H-Index - 65
eISSN - 1099-0801
pISSN - 0269-3879
DOI - 10.1002/bmc.1202
Subject(s) - chemistry , garcinia , chromatography , electrospray ionization , mass spectrometry , high performance liquid chromatography , electrospray , acetic acid , reversed phase chromatography , acetonitrile , organic chemistry , botany , biology
A rapid, sensitive and simple reverse‐phase high‐performance liquid chromatography–electrospray ionization mass spectrometric method has been developed for the identification and quantification of two isomeric polyisoprenylated benzophenones, isoxanthochymol and camboginol, in the extracts of the stem bark, seeds and seed pericarps of Garcinia indica and in the fruit rinds of Garcinia cambogia . The separation of isoxanthochymol and camboginol was achieved on a Perkin Elmer RP 8 column (10 × 2.1 mm with 5.0 µm particle size) using a solvent system consisting of a mixture of acetonitrile–water (80:20, v/v) and methanol–acetic acid (99.0:1.0, v/v) as a mobile phase in a gradient elution mode. The limits of detection and quantification were 5 and 10 µg/mL for isoxanthochymol and 50 and 100 µg/mL for camboginol, respectively. The intra‐ and inter‐day precisions were 2.34 and 3.41% for isoxanthochymol and 3.35 and 3.66% for camboginol. The identity of the two isomeric compounds in the samples was determined on a triple quadrupole mass spectrometer with ESI interface operating in the negative ion mode. The method was used to identify and quantify isoxanthochymol and camboginol in the different extracts of two Garcinia species, Garcinia indica and Garcinia cambogia . Copyright © 2009 John Wiley & Sons, Ltd.