2014Journal of Analytical ChemistryRequires access

Using solid-phase microextraction combined with gas chromatography-mass spectrometry for the study of the volatile products of biosynthesis released by plants and microorganisms

E. I. Savelieva, Olga Gavrilova, T. Yu. Gagkaeva

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Abstract

Published data on the methods and results of study of profiles of volatile biologically active compounds are summarized and discussed. The leading role of gas chromatography-mass spectrometry combined with headspace solid-phase microextraction as an optimum analytical method for determining the qualitative and quantitative composition of volatile organic compounds in in vivo experiments is substantiated. The results of investigation of volatile organic compounds produced by micromycetes of the genus Fusarium are reviewed.

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What this paper is about

Published data on the methods and results of study of profiles of volatile biologically active compounds are summarized and discussed. The leading role of gas chromatography-mass spectrometry combined with headspace solid-phase microextraction as an optimum analytical method for determining the qualitative and quantitative composition of volatile organic compounds in in vivo experiments is substantiated. The results of investigation of volatile organic compounds produced by micromycetes of the genus Fusarium are reviewed.

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OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Published data on the methods and results of study of profiles of volatile biologically active compounds are summarized and discussed. The leading role of gas chromatography-mass spectrometry combined with headspace solid-phase microextraction as an optimum analytical method for determining the qualitative and quantitative composition of volatile organic compounds in in vivo experiments is substantiated. The results of investigation of volatile organic compounds produced by micromycetes of the genus Fusarium are reviewed.

Key concepts: Chemistry, Solid-phase microextraction, Chromatography, Mass spectrometry, Gas chromatography, Gas chromatography–mass spectrometry

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