# Exploring the Lipidome: Current Lipid Extraction Techniques for Mass Spectrometry Analysis

**Authors:** Julian Aldana, Adriana Romero-Otero, Mónica P. Cala

PMC · DOI: 10.3390/metabo10060231 · Metabolites · 2020-06-03

## TL;DR

This paper reviews current lipid extraction methods for mass spectrometry, highlighting their importance in accurate lipidomic studies.

## Contribution

The paper provides a comprehensive review of lipid extraction techniques and their impact on downstream lipidomic analysis.

## Key findings

- Lipid extraction methods significantly influence the yield and bias of lipidomic data.
- Current techniques vary in their suitability for different biological matrices and lipid classes.
- Optimal extraction is critical for reliable untargeted and targeted lipidomic studies.

## Abstract

In recent years, high-throughput lipid profiling has contributed to understand the biological, physiological and pathological roles of lipids in living organisms. Across all kingdoms of life, important cell and systemic processes are mediated by lipids including compartmentalization, signaling and energy homeostasis. Despite important advances in liquid chromatography and mass spectrometry, sample extraction procedures remain a bottleneck in lipidomic studies, since the wide structural diversity of lipids imposes a constrain in the type and amount of lipids extracted. Differences in extraction yield across lipid classes can induce a bias on down-stream analysis and outcomes. This review aims to summarize current lipid extraction techniques used for untargeted and targeted studies based on mass spectrometry. Considerations, applications, and limitations of these techniques are discussed when used to extract lipids in complex biological matrices, such as tissues, biofluids, foods, and microorganisms.

## Full-text entities

- **Genes:** RNF130 (ring finger protein 130) [NCBI Gene 55819] {aka G1RP, G1RZFP, GOLIATH, GP}, DNLZ (DNL-type zinc finger) [NCBI Gene 728489] {aka C9orf151, HEP, HEP1, TIMM15, ZIM17, bA413M3.2}, PGR (progesterone receptor) [NCBI Gene 5241] {aka NR3C3, PR}
- **Diseases:** Atherosclerotic plaques (MESH:D058226), diabetes (MESH:D003920), Alzheimer's disease (MESH:D000544), cancer (MESH:D009369), PAEA (MESH:D020803), DMTMM (MESH:D053632)
- **Chemicals:** Ammonium acetate (MESH:C018824), tocopherols (MESH:D024505), Fatty acids (MESH:D005227), hexane (MESH:D006586), Secosteroids (MESH:D012632), PC (MESH:D010713), MTBE (MESH:C043243), Phospholipid (MESH:D010743), salts (MESH:D012492), isoprene (MESH:C005059), Silica (MESH:D012822), alcohol (MESH:D000438), 3-nitrophenylboronic acid (MESH:C017562), Acetone (MESH:D000096), CH2Cl2 (MESH:D008752), PRs (MESH:D011221), hydrocarbon (MESH:D006838), 2-propanol (MESH:D019840), EDTA (MESH:D004492), Isoprenoids (MESH:D013729), 2E,6E-farnesol (MESH:D005204), 2,2,4-trimethylpentane (MESH:C045798), PS (MESH:D010718), Aflatoxins (MESH:D000348), Methanol (MESH:D000432), CHCl3 (MESH:D002725), carbohydrates (MESH:D002241), BHA (MESH:D002083), acetyl-CoA (MESH:D000105), LiCl (MESH:D018021), toluene (MESH:D014050), Quinones (MESH:D011809), C18 (MESH:C109760), KOH (MESH:C029943), polyphenols (MESH:D059808), tetracyclines (MESH:D013754), 2-(2-Pyridilamino)-ethylamine (-), Methyl formate (MESH:C025468), lysophospholipids (MESH:D008246), ester (MESH:D004952), PI (MESH:D010716), Eicosanoids (MESH:D015777), Steroid (MESH:D013256), Polyprenols (MESH:D000081026), PG (MESH:D010715), SP (MESH:D013107), Ceramides (MESH:D002518), TG (MESH:D014280), MSTFA (MESH:C086665), oxylipin (MESH:D054883), n-Butanol (MESH:D020001), NP (MESH:D009405), seminolipids (MESH:C009233), Formic acid (MESH:C030544), CL (MESH:D002308), Acetic acid (MESH:D019342), N,N-dimethylpyridin-4-amine (MESH:C003885), H2O (MESH:D014867), oxysterols (MESH:D000072376), cholesteryl esters (MESH:D002788)
- **Species:** Rattus norvegicus (brown rat, species) [taxon 10116], Homo sapiens (human, species) [taxon 9606], Bacteria Latreille et al. 1825 (Bacteria stick insect, genus) [taxon 629395], Bombyx mori (domestic silkworm, species) [taxon 7091], Mus musculus (house mouse, species) [taxon 10090]

## Full text

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## Figures

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## References

185 references — full list in the complete paper: https://tomesphere.com/paper/PMC7345237/full.md

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Source: https://tomesphere.com/paper/PMC7345237