A Review of Efforts to Improve Lipid Stability during Sample Preparation and Standardization Efforts to Ensure Accuracy in the Reporting of Lipid Measurements
Autor: | Hubert W. Vesper, Timothy J. Garrett, Christina M. Jones, John A. Bowden, Jeremy P. Koelmel, Candice Z. Ulmer, Juan J. Aristizabal-Henao |
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Rok vydání: | 2020 |
Předmět: |
0301 basic medicine
030109 nutrition & dietetics Standardization Computer science Organic Chemistry Cell Biology Lipid Metabolism Lipid storage Lipid degradation Lipids Biochemistry Article 03 medical and health sciences Human health 030104 developmental biology Lipidomics Animals Humans Sample preparation Biochemical engineering Sample collection |
Zdroj: | Lipids |
ISSN: | 1558-9307 0024-4201 |
DOI: | 10.1002/lipd.12263 |
Popis: | Lipidomics is a rapidly growing field, fueled by developments in analytical instrumentation and bioinformatics. To date, most researchers and industries have employed their own lipidomics workflows without a consensus on best practices. Without a community-wide consensus on best practices for the prevention of lipid degradation and transformations through sample collection and analysis, it is difficult to assess the quality of lipidomics data and hence trust results. Clinical studies often rely on samples being stored for weeks or months until they are analyzed, but inappropriate sampling techniques, storage temperatures, and analytical protocols can result in the degradation of complex lipids and the generation of oxidized or hydrolyzed metabolite artifacts. While best practices for lipid stability are sample dependent, it is generally recommended that strategies during sample preparation capable of quenching enzymatic activity and preventing oxidation should be considered. In addition, after sample preparation, lipid extracts should be stored in organic solvents with antioxidants at -20 °C or lower in an airtight container without exposure to light or oxygen. This will reduce or eliminate sublimation, and chemically and physically induced molecular transformations such as oxidation, enzymatic transformation, and photon/heat-induced degradation. This review explores the available literature on lipid stability, with a particular focus on human health and/or clinical lipidomic applications. Specifically, this includes a description of known mechanisms of lipid degradation, strategies, and considerations for lipid storage, as well as current efforts for standardization and quality insurance of protocols. |
Databáze: | OpenAIRE |
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