Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Rapid measurement of indole levels in Brassica vegetables using one millilitre binary organic extraction solvent and capillary electrophoresis‐UV analysis

View through CrossRef
AbstractIntroductionBrassica vegetables contain high levels of indole compounds which have been found to provide health benefits, especially as cancer‐preventive agents. An efficient and rapid method using solvent extraction with capillary electrophoresis (CE) and ultraviolet (UV) detection was developed for the determination of four major indoles from four types of Brassica vegetables.Materials and MethodsFreeze‐dried samples of four Brassica vegetables, i.e. broccoli, cauliflower, Chinese cabbage and cabbage, were selected. Hence, 1 mL of the binary solvent dimethylformamide (DMF)–methanol, 4:1 (v/v), was used for sample extraction. The extracts were diluted with the running buffer and directly analysed using CE with UV detection of four indole compounds.ResultsThe binary solvent DMF–methanol, 4:1 (v/v) was selected from studies of the extraction efficiency of standard indoles spiked in ivy gourd (as the negative control sample) and using diphenylamine as the internal standard. Recovery was 80(±10)–120(±3)% for the four indoles: indole‐3‐carbinol (I3C), indole‐3‐acetonitrile (I3A), indole‐3‐acetic acid (IAA), and 3,3′‐diindolylmethane (DIM). For direct analysis suitable dilution of the extract with the running buffer was required. The linear range of the quantitation is 0.75–25.0 μg/mL, limit of detection (LOD) of 0.14–0.52 μg/mL and r2 > 0.998. The amount of indole in the Brassica vegetables are in the order I3C > > IAA, I3A > DIM.ConclusionA rapid method for extraction and quantitation of four indoles in four Brassica vegetables using CE with UV detection was developed. It has the potential as an efficient technique for generating data for use in agricultural and nutritional studies.
Title: Rapid measurement of indole levels in Brassica vegetables using one millilitre binary organic extraction solvent and capillary electrophoresis‐UV analysis
Description:
AbstractIntroductionBrassica vegetables contain high levels of indole compounds which have been found to provide health benefits, especially as cancer‐preventive agents.
An efficient and rapid method using solvent extraction with capillary electrophoresis (CE) and ultraviolet (UV) detection was developed for the determination of four major indoles from four types of Brassica vegetables.
Materials and MethodsFreeze‐dried samples of four Brassica vegetables, i.
e.
broccoli, cauliflower, Chinese cabbage and cabbage, were selected.
Hence, 1 mL of the binary solvent dimethylformamide (DMF)–methanol, 4:1 (v/v), was used for sample extraction.
The extracts were diluted with the running buffer and directly analysed using CE with UV detection of four indole compounds.
ResultsThe binary solvent DMF–methanol, 4:1 (v/v) was selected from studies of the extraction efficiency of standard indoles spiked in ivy gourd (as the negative control sample) and using diphenylamine as the internal standard.
Recovery was 80(±10)–120(±3)% for the four indoles: indole‐3‐carbinol (I3C), indole‐3‐acetonitrile (I3A), indole‐3‐acetic acid (IAA), and 3,3′‐diindolylmethane (DIM).
For direct analysis suitable dilution of the extract with the running buffer was required.
The linear range of the quantitation is 0.
75–25.
0 μg/mL, limit of detection (LOD) of 0.
14–0.
52 μg/mL and r2 > 0.
998.
The amount of indole in the Brassica vegetables are in the order I3C > > IAA, I3A > DIM.
ConclusionA rapid method for extraction and quantitation of four indoles in four Brassica vegetables using CE with UV detection was developed.
It has the potential as an efficient technique for generating data for use in agricultural and nutritional studies.

Related Results

Penelusuran Pustaka Potensi Sayuran dari Genus Brassica sebagai Antibakteri
Penelusuran Pustaka Potensi Sayuran dari Genus Brassica sebagai Antibakteri
Abstract. The genus Brassica is one of the largest genera of flowering plants, which has more than 3000 species distributed worldwide. In addition, in this genus Brassica there are...
7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
7 th International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see Rapid Communications in Mass Spectrometry 2012, 26 , ...
A New Displacement Capillary Pressure Model
A New Displacement Capillary Pressure Model
Abstract A capillary pressure function for porous media (commonly known as the J-function) was postulated by Leverett and has been widely used for correlation pur...
ELECTROPHORESIS: THEORY AND APPLICATIONS
ELECTROPHORESIS: THEORY AND APPLICATIONS
Electrophoresis serves as a foundational analytical technique supporting modern molecular biology, biochemistry, clinical diagnostics, forensic science, and biotechnology. Originat...
The capillary fascicle in skeletal muscle: Structural and functional physiology of RBC distribution in capillary networks
The capillary fascicle in skeletal muscle: Structural and functional physiology of RBC distribution in capillary networks
Key points The capillary module, consisting of parallel capillaries from arteriole to venule, is classically considered as the building block of complex capillary networks. In skel...
Capillary Pressure During Immiscible Displacement
Capillary Pressure During Immiscible Displacement
Abstract Experiments performed on immiscible displacement of heptanes and mineral oil by water in capillary tubing showed that capillary pressure during drainage ...
Principles of Three Phase Capillary Pressures
Principles of Three Phase Capillary Pressures
Abstract In porous media, there are a variety of configurations in which three immiscible fluids can be distributed within a single body. For example, the fluids ...
Dynamic evolution of 100-keV H+ through polycarbonate nanocapillaries
Dynamic evolution of 100-keV H+ through polycarbonate nanocapillaries
In recent years, the guiding effect of highly charged ions (HCIs) through insulating nanocapillary membrane has received extensive attention. It is found that slow highly charged i...

Back to Top