Advances in Lipid Extraction Methods—A Review
Достижения в методах экстракции липидов: обзор
2021-12-20
SCID: 54.1/ke999aet
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LC-MS lipidomicschloroform/methanol extractiongreen solventslipid extractionsupercritical CO2 extraction
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Abstract (AI)
Extraction of lipids from biological tissues is a crucial step in lipid analysis. The selection of appropriate solvent is the most critical factor in the efficient extraction of lipids. A mixture of polar (to disrupt the protein-lipid complexes) and nonpolar (to dissolve the neutral lipids) solvents are precisely selected to extract lipids efficiently. In addition, the disintegration of complex and rigid cell-wall of plants, fungi, and microalgal cells by various mechanical, chemical, and enzymatic treatments facilitate the solvent penetration and extraction of lipids. This review discusses the chloroform/methanol-based classical lipid extraction methods and modern modifications of these methods in terms of using healthy and environmentally safe solvents and rapid single-step extraction. At the same time, some adaptations were made to recover the specific lipids. In addition, the high throughput lipid extraction methodologies used for liquid chromatography-mass spectrometry (LC-MS)-based plant and animal lipidomics were discussed. The advantages and disadvantages of various pretreatments and extraction methods were also illustrated. Moreover, the emerging green solvents-based lipid extraction method, including supercritical CO2 extraction (SCE), is also discussed.
Key Findings
1
Classical chloroform/methanol extraction has been modified toward healthier, environmentally safer solvents and rapid single-step procedures.
2
Efficient lipid extraction depends primarily on selecting complementary polar and nonpolar solvents to disrupt protein–lipid complexes and dissolve neutral lipids.
3
Emerging greener approaches, including supercritical CO2 extraction, offer alternatives whose pretreatment and extraction advantages and disadvantages require consideration.
4
Mechanical, chemical, and enzymatic disruption of rigid cell walls improves solvent penetration and lipid recovery from plants, fungi, and microalgae.
5
Method adaptations enable selective recovery of specific lipid classes and support high-throughput LC–MS lipidomics in plant and animal samples.
Research Object
Lipid extraction from biological tissues and cells of plants, fungi, microalgae, and animals
Research Subject
Solvent selection, pretreatment, method modifications, efficiency, specificity, throughput, and environmental safety of lipid extraction
Publication Details
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2021-12-20
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