Literature DB >> 26278391

The Hepatic Lipidome: A Gateway to Understanding the Pathogenes is of Alcohol-Induced Fatty Liver.

Robin D Clugston1, Madeleine A Gao2, William S Blaner2.   

Abstract

Chronic alcohol consumption can lead to the development of alcoholic fatty liver disease. The underlying pathogenic mechanisms however, have not been fully elucidated. Here, we review the current state of the art regarding the application of lipidomics to study alcohol's effect on hepatic lipids. It is clear that alcohol has a profound effect on the hepatic lipidome, with documented changes in the major lipid categories (i.e. fatty acyls, glycerolipids, glycerophospholipids, sphingolipids, sterol lipids and prenol lipids). Alcohol's most striking effect is the marked change in the hepatic fatty acyl pool. This effect includes increased levels of 18-carbon fatty acyl chains incorporated into multiple lipid species, as well as a general shift toward increased unsaturation of fatty acyl moieties. In addition to our literature review, we also make several recommendations to consider when designing lipidomic studies into alcohol's effects. These recommendations include integration of lipidomic data with other measures of lipid metabolism, inclusion of multiple experimental time points, and presentation of quantitative data. We believe rigorous analysis of the hepatic lipidome can yield new insight into the pathogenesis of alcohol-induced fatty liver. While the existing literature has been largely descriptive, the field is poised to apply lipidomics to yield a new level of understanding on alcohol's effects on hepatic lipid metabolism. Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.org.

Entities:  

Keywords:  Alcohol; fatty acyls; fatty liver; glycerolipids; glycerophospholipids; lipidomics; prenol lipids; sphingolipids; sterolzzm321990lipids

Mesh:

Year:  2017        PMID: 26278391      PMCID: PMC4757511          DOI: 10.2174/1874467208666150817111419

Source DB:  PubMed          Journal:  Curr Mol Pharmacol        ISSN: 1874-4672            Impact factor:   3.339


  85 in total

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Journal:  J Clin Invest       Date:  1961-02       Impact factor: 14.808

2.  Metabolic profiling of an alcoholic fatty liver in zebrafish (Danio rerio).

Authors:  Zi-Hey Jang; Hee-Chung Chung; Yun Gyong Ahn; Yong-Kook Kwon; Jin-Sup Kim; Jae-Ho Ryu; Do Hyun Ryu; Cheol-Hee Kim; Geum-Sook Hwang
Journal:  Mol Biosyst       Date:  2012-04-25

3.  Sphingolipidomics: high-throughput, structure-specific, and quantitative analysis of sphingolipids by liquid chromatography tandem mass spectrometry.

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Journal:  Methods       Date:  2005-06       Impact factor: 3.608

4.  Global analysis of the yeast lipidome by quantitative shotgun mass spectrometry.

Authors:  Christer S Ejsing; Julio L Sampaio; Vineeth Surendranath; Eva Duchoslav; Kim Ekroos; Robin W Klemm; Kai Simons; Andrej Shevchenko
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Review 5.  Ceramide and ceramide 1-phosphate in health and disease.

Authors:  Lide Arana; Patricia Gangoiti; Alberto Ouro; Miguel Trueba; Antonio Gómez-Muñoz
Journal:  Lipids Health Dis       Date:  2010-02-05       Impact factor: 3.876

6.  Detection of the abundance of diacylglycerol and triacylglycerol molecular species in cells using neutral loss mass spectrometry.

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Journal:  Anal Biochem       Date:  2007-03-18       Impact factor: 3.365

7.  Paracrine activation of hepatic CB1 receptors by stellate cell-derived endocannabinoids mediates alcoholic fatty liver.

Authors:  Won-il Jeong; Douglas Osei-Hyiaman; Ogyi Park; Jie Liu; Sándor Bátkai; Partha Mukhopadhyay; Norio Horiguchi; Judith Harvey-White; Giovanni Marsicano; Beat Lutz; Bin Gao; George Kunos
Journal:  Cell Metab       Date:  2008-03       Impact factor: 27.287

8.  Lysophosphatidylcholine acyltransferase 1 altered phospholipid composition and regulated hepatoma progression.

Authors:  Yoshifumi Morita; Takanori Sakaguchi; Koji Ikegami; Naoko Goto-Inoue; Takahiro Hayasaka; Vu Thi Hang; Hiroki Tanaka; Takashi Harada; Yasushi Shibasaki; Atsushi Suzuki; Kazuhiko Fukumoto; Keisuke Inaba; Makoto Murakami; Mitsutoshi Setou; Hiroyuki Konno
Journal:  J Hepatol       Date:  2013-04-06       Impact factor: 25.083

9.  Hepatic fibrosis in alcoholic steatosis. Morphologic aspects and evolutive tendencies.

Authors:  T Banciu; N Tudose
Journal:  Med Interne       Date:  1988 Apr-Jun

10.  Lipid-induced hepatic insulin resistance.

Authors:  Thomas Galbo; Gerald I Shulman
Journal:  Aging (Albany NY)       Date:  2013-08       Impact factor: 5.682

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  11 in total

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Journal:  J Lipid Res       Date:  2020-02-06       Impact factor: 5.922

2.  Serum metabolomic analysis reveals several novel metabolites in association with excessive alcohol use - an exploratory study.

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Journal:  Transl Res       Date:  2021-11-03       Impact factor: 10.171

3.  Effect of intravenous ghrelin administration, combined with alcohol, on circulating metabolome in heavy drinking individuals with alcohol use disorder.

Authors:  Olli Kärkkäinen; Mehdi Farokhnia; Anton Klåvus; Seppo Auriola; Marko Lehtonen; Sara L Deschaine; Daria Piacentino; Kelly M Abshire; Shelley N Jackson; Lorenzo Leggio
Journal:  Alcohol Clin Exp Res       Date:  2021-09-30       Impact factor: 3.928

4.  Stress-Responsive Gene FK506-Binding Protein 51 Mediates Alcohol-Induced Liver Injury Through the Hippo Pathway and Chemokine (C-X-C Motif) Ligand 1 Signaling.

Authors:  Praveen Kusumanchi; Tiebing Liang; Ting Zhang; Ruth Ann Ross; Sen Han; Kristina Chandler; Adepeju Oshodi; Yanchao Jiang; Alexander L Dent; Nicholas J Skill; Nazmul Huda; Jing Ma; Zhihong Yang; Suthat Liangpunsakul
Journal:  Hepatology       Date:  2021-08-30       Impact factor: 17.298

5.  Dietary Macronutrient Composition Determines the Contribution of DGAT1 to Alcoholic Steatosis.

Authors:  Li-Shin Huang; Jason J Yuen; Michael J Trites; Amit Saha; Caleb T Epps; Yungying Hu; Sarahjean Kerolle; Seung-Ah Lee; Hongfeng Jiang; Ira J Goldberg; William S Blaner; Robin D Clugston
Journal:  Alcohol Clin Exp Res       Date:  2018-10-03       Impact factor: 3.455

6.  Lipidomics and Redox Lipidomics Indicate Early Stage Alcohol-Induced Liver Damage.

Authors:  Jeremy P Koelmel; Wan Y Tan; Yang Li; John A Bowden; Atiye Ahmadireskety; Andrew C Patt; David J Orlicky; Ewy Mathé; Nicholas M Kroeger; David C Thompson; Jason A Cochran; Jaya Prakash Golla; Aikaterini Kandyliari; Ying Chen; Georgia Charkoftaki; Joy D Guingab-Cagmat; Hiroshi Tsugawa; Anmol Arora; Kirill Veselkov; Shunji Kato; Yurika Otoki; Kiyotaka Nakagawa; Richard A Yost; Timothy J Garrett; Vasilis Vasiliou
Journal:  Hepatol Commun       Date:  2021-11-23

Review 7.  Emerging Insights on the Diverse Roles of Proprotein Convertase Subtilisin/Kexin Type 9 (PCSK9) in Chronic Liver Diseases: Cholesterol Metabolism and Beyond.

Authors:  Thomas Grewal; Christa Buechler
Journal:  Int J Mol Sci       Date:  2022-01-19       Impact factor: 5.923

8.  Distinctive lipid signatures of bronchial epithelial cells associated with cystic fibrosis drugs, including Trikafta.

Authors:  Nara Liessi; Emanuela Pesce; Clarissa Braccia; Sine Mandrup Bertozzi; Alessandro Giraudo; Tiziano Bandiera; Nicoletta Pedemonte; Andrea Armirotti
Journal:  JCI Insight       Date:  2020-08-20

9.  Serum Acylcarnitines Associated with High Short-Term Mortality in Patients with Alcoholic Hepatitis.

Authors:  Bei Gao; Josepmaria Argemi; Ramon Bataller; Bernd Schnabl
Journal:  Biomolecules       Date:  2021-02-14

10.  Alcohol and Liver Clock Disruption Increase Small Droplet Macrosteatosis, Alter Lipid Metabolism and Clock Gene mRNA Rhythms, and Remodel the Triglyceride Lipidome in Mouse Liver.

Authors:  Jennifer A Valcin; Uduak S Udoh; Telisha M Swain; Kelly K Andringa; Chirag R Patel; Sameer Al Diffalha; Paul R S Baker; Karen L Gamble; Shannon M Bailey
Journal:  Front Physiol       Date:  2020-09-07       Impact factor: 4.566

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