Literature DB >> 30515538

Mapping the triglyceride distribution in NAFLD human liver by MALDI imaging mass spectrometry reveals molecular differences in micro and macro steatosis.

Hussam Alamri1, Nathan Heath Patterson2,3, Ethan Yang2, Pablo Zoroquiain4, Anthoula Lazaris5, Pierre Chaurand6, Peter Metrakos7,8.   

Abstract

Hepatic lipid accumulation, mainly in the form of triglycerides (TGs), is the hallmark of non-alcoholic fatty liver disease (NAFLD). To date, the spatial distribution of individual lipids in NAFLD-affected livers is not well characterized. This study aims to map the triglyceride distribution in normal human liver samples and livers with NAFLD and cirrhosis with imaging mass spectrometry (MALDI IMS). Specifically, whether individual triglyceride species differing by fatty acid chain length and degree of saturation correlate with the histopathological features of NAFLD as identified with classical H&E. Using a recently reported sodium-doped gold-assisted laser desorption/ionization IMS sample preparation, 20 human liver samples (five normal livers, five samples with simple steatosis, five samples with steatohepatitis, and five samples with cirrhosis) were analyzed at 10-μm lateral resolution. A total of 24 individual lipid species, primarily neutral lipids, were identified (22 TGs and two phospholipids). In samples with a low level of steatosis, TGs accumulated around the pericentral zone. In all samples, TGs with different degrees of side-chain saturation and side-chain length demonstrated differential distribution. Furthermore, hepatocytes containing macro lipid droplets were highly enriched in fully saturated triglycerides. This enrichment was also observed in areas of hepatocyte ballooning in samples with steatohepatitis and cirrhosis. In conclusion, macro lipid droplets in NAFLD are enriched in fully saturated triglycerides, indicating a possible increase in de novo lipogenesis that leads to steatohepatitis and cirrhosis.

Entities:  

Keywords:  Fatty acid/synthesis; Imaging mass spectrometry; Lipids; Non-alcoholic fatty liver disease; Triglycerides

Mesh:

Substances:

Year:  2018        PMID: 30515538      PMCID: PMC6513670          DOI: 10.1007/s00216-018-1506-8

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  37 in total

1.  Imaging mass spectrometry.

Authors:  Liam A McDonnell; Ron M A Heeren
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Authors:  M Cnop; J C Hannaert; A Hoorens; D L Eizirik; D G Pipeleers
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Authors:  Kerry L Donnelly; Coleman I Smith; Sarah J Schwarzenberg; Jose Jessurun; Mark D Boldt; Elizabeth J Parks
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6.  Distinct effects of saturated and monounsaturated fatty acids on beta-cell turnover and function.

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Review 3.  Multimodal Imaging Mass Spectrometry: Next Generation Molecular Mapping in Biology and Medicine.

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7.  The Propensity of the Human Liver to Form Large Lipid Droplets Is Associated with PNPLA3 Polymorphism, Reduced INSIG1 and NPC1L1 Expression and Increased Fibrogenetic Capacity.

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8.  Light sheet fluorescence microscopy guided MALDI-imaging mass spectrometry of cleared tissue samples.

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9.  Molecular imaging analysis of microvesicular and macrovesicular lipid droplets in non-alcoholic fatty liver disease by Raman microscopy.

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Review 10.  Hepatic lipid droplets: A balancing act between energy storage and metabolic dysfunction in NAFLD.

Authors:  Douglas G Mashek
Journal:  Mol Metab       Date:  2020-11-10       Impact factor: 7.422

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