Comprehensive chromatographic and spectroscopic methods for the separation and identification of intact glucosinolates

被引:125
作者
Prestera, T
Fahey, JW
Holtzclaw, WD
Abeygunawardana, C
Kachinski, JL
Talalay, P
机构
[1] JOHNS HOPKINS UNIV, SCH MED, DEPT PHARMACOL & MOL SCI, BALTIMORE, MD 21205 USA
[2] JOHNS HOPKINS UNIV, SCH MED, DEPT BIOL CHEM, BALTIMORE, MD 21205 USA
[3] JOHNS HOPKINS UNIV, SCH ARTS & SCI, DEPT CHEM, BALTIMORE, MD 21218 USA
关键词
D O I
10.1006/abio.1996.0312
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Much effort has been devoted to developing methods for the efficient isolation and identification of glucosinolates. Existing methods for separation involve ion exchange, GLC, and HPLC (mostly after chemical modification by enzymatic sulfate removal and/or silylation). We demonstrate a simple and direct strategy for analyzing the glucosinolate content of plant extracts, made possible by a new combination of widely available techniques: (a) reverse-phase paired-ion chromatography (PIG) of plant extracts, (b) hydrolysis of glucosinolates by myrosinase and quantitation of resulting isothiocyanates by cyclocondensation with 1,2-benzenedithiol; (c) a novel method for replacing the PIC counterions by ammonium ions, permitting direct bioassay, mass, and H-1 NMR spectrometry; (d) mass spectrometric analysis of ammonium salts by negative-ion fast atom bombardment (FAB) to determine mit of the [M-H](-) ion, and by chemical ionization (CI) in ammonia to obtain accurate masses of characteristic fragment ions, principally [R-CN:NH4](+), [R-CH=NOH:H](+) and [R-CH=NOH:NH4](+); and (e) high-resolution H-1 NMR spectroscopy of intact glucosinolates. FAB and CI mass spectra, as well as high-resolution H-1 NMR spectra were obtained for a variety of glucosinolate standards. The results provide guidance for the isolation and characterization of unknown glucosinolates from plants. These combined procedures were applied to a sample of broccoli (cultivar SAG;A), in order to resolve and identify its major glucosinolates: 4-methylsulfinylbutyl glucosinolate (glucoraphanin) and 4-methylthiobutyl glucosinolate (glucoerucin). Thus, this analytical strategy provides a powerful technique for identifying and quantitating glucosinolates in plant extracts without resorting to derivatization. (C) 1996 Academic Press, Inc.
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页码:168 / 179
页数:12
相关论文
共 38 条
[1]  
[Anonymous], GLUCOSINOLATES RAPES
[2]  
BAILEY GS, 1987, JNCI-J NATL CANCER I, V78, P931
[3]  
BETZ JM, 1994, ACS SYM SER, V546, P181
[4]   FRUIT, VEGETABLES, AND CANCER PREVENTION - A REVIEW OF THE EPIDEMIOLOGIC EVIDENCE [J].
BLOCK, G ;
PATTERSON, B ;
SUBAR, A .
NUTRITION AND CANCER-AN INTERNATIONAL JOURNAL, 1992, 18 (01) :1-29
[5]   CHARACTERIZATION OF 5 GLUCOSINOLATES BY FAST-ATOM-BOMBARDMENT MASS-SPECTROMETRY AND COLLISION ACTIVATION OF [M - H]-1 [J].
BOJESEN, G ;
LARSEN, E .
BIOLOGICAL MASS SPECTROMETRY, 1991, 20 (05) :286-288
[6]   DISTRIBUTION OF BETA-THIOGLUCOSIDASE ACTIVITY IN INTACT PLANTS, CELL AND TISSUE-CULTURES AND REGENERANT PLANTS OF BRASSICA-NAPUS L [J].
BONES, AM .
JOURNAL OF EXPERIMENTAL BOTANY, 1990, 41 (227) :737-744
[7]  
CARLSON DG, 1987, J AM SOC HORTIC SCI, V112, P173
[8]   REDIRECTION OF TRYPTOPHAN LEADS TO PRODUCTION OF LOW INDOLE GLUCOSINOLATE CANOLA [J].
CHAVADEJ, S ;
BRISSON, N ;
MCNEIL, JN ;
DELUCA, V .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (06) :2166-2170
[9]  
CHEW FS, 1988, ACS SYM SER, V380, P155
[10]   GLUCOSINOLATE COMPOSITION OF SEEDS FROM 297 SPECIES OF WILD PLANTS [J].
DAXENBICHLER, ME ;
SPENCER, GF ;
CARLSON, DG ;
ROSE, GB ;
BRINKER, AM ;
POWELL, RG .
PHYTOCHEMISTRY, 1991, 30 (08) :2623-2638