Preparation of Fatty Acid Methyl Esters for Gas-Chromatographic Analysis of Marine Lipids: Insight Studies
- 1 June 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Agricultural and Food Chemistry
- Vol. 53 (13) , 5049-5059
- https://doi.org/10.1021/jf048788i
Abstract
Assays for fatty acid composition in biological materials are commonly carried out by gas chromatography, after conversion of the lipid material into the corresponding methyl esters (FAME) via suitable derivatization reactions. Quantitative derivatization depends on the type of catalyst and processing conditions employed, as well as the solubility of said sample in the reaction medium. Most literature pertinent to derivatization has focused on differential comparison between alternative methods; although useful to find out the best method for a particular sample, additional studies on factors that may affect each step of FAME preparation are urged. In this work, the influence of various parameters in each step of derivatization reactions was studied, using both cod liver oil and microalgal biomass as model systems. The accuracies of said methodologies were tested via comparison with the AOCS standard method, whereas their reproducibility was assessed by analysis of variance of (replicated) data. Alkaline catalysts generated lower levels of long-chain unsaturated FAME than acidic ones. Among these, acetyl chloride and BF3 were statistically equivalent to each other. The standard method, which involves alkaline treatment of samples before acidic methylation with BF3, provided equivalent results when compared with acidic methylation with BF3 alone. Polarity of the reaction medium was found to be of the utmost importance in the process: intermediate values of polarity [e.g., obtained by a 1:1 (v/v) mixture of methanol with diethyl ether or toluene] provided amounts of extracted polyunsaturated fatty acids statistically higher than those obtained via the standard method. Keywords: Fish oil; derivatization; methylation; microalgae; polarity index; polyunsaturated fatty acids; transmethylationKeywords
This publication has 10 references indexed in Scilit:
- Application of analytical derivatizations to the quantitative and qualitative determination of fatty acidsAnalytica Chimica Acta, 2002
- Development of fatty acid analysis by high-performance liquid chromatography, gas chromatography, and related techniquesAnalytica Chimica Acta, 2001
- Laboratory preparation of conjugated linoleic acidsJournal of Oil & Fat Industries, 1998
- A rapid method for the determination of bacterial fatty acid compositionLetters in Applied Microbiology, 1993
- Validation of a method for gas chromatographic analysis of eicosapentaenoic acid and docosahexaenoic acid as active ingredients in medicinal productsJournal of Oil & Fat Industries, 1992
- Improved recovery of fatty acid through direct transesterification without prior extraction or purification.Journal of Lipid Research, 1984
- Preparation of methyl esters from the saponifiable fatty acids in small biological specimens for gas-liquid chromatographic analysisJournal of Chromatography A, 1974
- Alcoholysis, saponification and the preparation of fatty acid methyl estersLipids, 1971
- Quantitative Determination of Sugars by Rapid Horizontal Paper ChromatographyAnalytical Chemistry, 1961
- Analysis of Long-Chain Fatty Acids by Gas-Liquid ChromatographyAnalytical Chemistry, 1959